Carotenoids are essential components in tea quality, contributing to leaf color and aroma. However, little information about carotenoids in different tea cultivars and their biosynthesis regulation mechanism during le...Carotenoids are essential components in tea quality, contributing to leaf color and aroma. However, little information about carotenoids in different tea cultivars and their biosynthesis regulation mechanism during leaf development is known. Here we analyzed carotenoids by HPLC in the buds and leaves of 113 tea cultivars harvested on the same day. By profile clustering, carotenoids were divided into five groups. Same group cultivars displayed divergence in the total content of carotenoids but a similar molar ratio. To figure out the molecular mechanisms of this phenomenon, we further characterized all functional lycopene cyclases, which are the branch point of the carotenoid biosynthesis pathway. Two β-lycopene cyclases(CsLCYB1 and CsLCYB2) and one ε-lycopene cyclase(CsLCYE1) were cloned. Subcellular localization analysis showed that all cloned CsLCYs were localized in plastids. Enzyme activity assays in E. coli indicated both CsLCYBs catalyzed lycopene into β-carotene, and CsLCYE1 produced δ-carotene and ε-carotene. We found CsLCYB1 and CsLCYE1 predominantly expressed in leaf, while CsLCYB2was mainly expressed during flowering stages. Suppression by antisense oligonucleotides reduced CsLCYB1 and CsLCYE1 transcripts and led to reduction of both β,β-branch and β,ε-branch carotenoids in leaf. The expression levels of CsLCYB1 showed a significant positive correlation withβ,β-branch carotenoids in leaf. Our study provides carotenoid profiles of different tea cultivars, which can assist tea producers in selecting cultivars of interest. Meanwhile, we proposed the molecular mechanism of carotenoids reflecting the tenderness of tea plant leaf from a metabolic flux perspective, and suggested lycopene cyclase that could be applied to the breeding of tea varieties with different branch carotenoids.展开更多
Adenylate cyclase(AC)is the key enzyme that catalyzes the formation of cAMP from ATP.In this study,we discovered two novel class Ⅲ ACs with a halophilic property from Thermobifida halotolerans DSM 44931(ThAC)and Halo...Adenylate cyclase(AC)is the key enzyme that catalyzes the formation of cAMP from ATP.In this study,we discovered two novel class Ⅲ ACs with a halophilic property from Thermobifida halotolerans DSM 44931(ThAC)and Haloactinopolyspora alba DSM 45211(HaAC),respectively.The recombinant ThAC and HaAC were expressed in Escherichia coli with molecular weights of 36.1 and 36.0 kDa respectively.The presence of 2500 and 2200 mmolL^(-1)1 NaCl significantly enhanced the enzyme activities of ThAC and HaAC,with 22-fold and 7.4-fold higher activities compared to those without NaCl,respectively.Several divalent metal ions were found to activate the recombinant ACs to different extents,and the optimal metal ion was Mg^(2+)for both ThAC and HaAC with concentrations of 80 mmol·L^(-1) and 40 mmol·L^(-1) respectively.Purified ThAC and HaAC had the optimal specific activities((4.59±0.35)×10^(4) and(7.76±0.52)×10^(4) U·mg^(-1))and catalytic efficiency(4.47 and 5.30 L·mmol^(-1)·s^(-1))at 45℃ and 40℃ respectively,while the optimum pH of both two recombinant ACs was 10.0.This is the first report of the halophilic Class III ACs,which could make new contributions to explore and study ACs for further associated investigations.展开更多
Cyclic nucleotide monophosphates(cNMPs),including 3′,5′-cyclic adenosine monophosphate(cAMP)and 3′,5′-cyclic guanosine monophosphate,are well-established signaling molecules essential for finely tuned plant respon...Cyclic nucleotide monophosphates(cNMPs),including 3′,5′-cyclic adenosine monophosphate(cAMP)and 3′,5′-cyclic guanosine monophosphate,are well-established signaling molecules essential for finely tuned plant responses to environmental and developmental stimuli(Kwiatkowski et al.,2024a).3′,5′-cNMPs are synthesized by cyclases,notably adenylate cyclases(ACs)and guanylate cyclases,that catalyze ATP and GTP to cAMP and 3′,5′-cyclic guanosine monophosphate.Highly conserved amino acid motifs derived from the catalytic centers of ACs/guanylate cyclases across species diagnostics for cyclase activities in the early 2000s(Gehring,2010)have led to the identification of>100 candidate cyclases in Arabidopsis thaliana,many of which have been experimentally validated(Kwiatkowski et al.,2024a).Unlike in mammals or bacteria,they constitute a part of complex proteins with varied domain architectures where the cyclases moonlight(Turek et al.,2024).Such regulatory function is evidenced through ACs operating as cryptic sites in transporters and disease-related proteins(Wong et al.,2023),some of which have been identified in crop plants such as maize and jujube,where they affect fundamental biological processes including germination,root growth,flowering,and responses to heat stress(Yang et al.,2021;Liu et al.,2023).展开更多
Dear Editor,Glyceollins are isoflavonoid-derived metabolites produced by soybean that hold great promise in improving human and animal health.The recurrent use of antibiotics in animal production has led to the emerge...Dear Editor,Glyceollins are isoflavonoid-derived metabolites produced by soybean that hold great promise in improving human and animal health.The recurrent use of antibiotics in animal production has led to the emergence of antibiotic resistance,which is causing a global challenge for public health and food systems.Owing to their broad-spectrum antimicrobial properties,glyceollins are being proposed to replace antibiotics in the swine industry to reduce antibiotic-resistant microorganisms in the food supply(Zavadil,2020;Ika Irianti et al.,2023).展开更多
Objective:To elucidate the underlying mechanism and effect of electroacupuncture(EA)on the neurogenic bladder following suprasacral spinal cord injury(ssCI).A rat model of detrusor hyperreflexia after SsCI was establi...Objective:To elucidate the underlying mechanism and effect of electroacupuncture(EA)on the neurogenic bladder following suprasacral spinal cord injury(ssCI).A rat model of detrusor hyperreflexia after SsCI was established to examine the urodynamics,detrusor muscle tissue morphology,the protein and mRNA expression levels of pituitary adenylate cyclase activating peptide(PACAP)and its receptor PAC1R,and cyclic adenosine monophosphate(cAMP)content in the detrusor muscle with a focus on the PACAPcAMP signaling pathway.Method:A total of 72 female SD rats were randomized into control group and sham operation group(n=12 per group)by using a random number table.The remaining 48 rats were established into the model of detrusor hyperreflexia after SsCI.After successful modeling,these rats were randomly assigned to model,EA,and EA+PACAP6-38 groups(n=12 per group).The unsuccessful modeled rats were used for exploratory observation.For the rats in EA group,"Ciliao(BL32)""Zhongji(CV3)",and"Sanyinjiao(SP6)"were needled and stimulated by EA.The PACAP receptor antagonist PACAP6-38 was administered intraperitoneally in the EA+PACAP6-38 group before EA,and EA was applied for seven consecutive days.After treatment,the urodynamics of the rats were analyzed,and hematoxylin and eosin staining was used to examine rat bladder detrusor tissue morphology.The expressions of PACAP-38 and PAC1R were detected by immunohistochemistry and Western blot.The mRNA expression levels of PACAP-38 and PAC1R were examined by RT-qPCR,while cAMP content was detected by ELISA.Results:(1)Compared with sham operation group,it was exhibited disarray in the transitional epithelium cells of the bladder in the modeled rats.The intercellular space was significantly widened,accompanied by inflammatory cell infiltration and noticeable tissue edema.Both the bladder initial pressure and leak point pressure of the rats were higher(P<0.01),whereas the maximum cystometric capacity and bladder compliance were lower(P<0.01).The protein and mRNA expression levels of PACAP-38 and PAC1R in the detrusor muscle,together with the cAMP content,were lower(P<0.05).(2)Compared with the model rats,the EA group showed reduced inflammatory response in the detrusor muscle tissue,with decreased monocyte infiltration and less severe tissue edema.The bladder smooth muscle cells exhibited increased integrity,and there was decreased cellular tissue edema,inflammatory cell infiltration,and fibroplasia.The bladder initial pressure and leak point pressure were lower(P<0.05),while the maximum cystometric capacity and bladder compliance were higher(P<0.01).The protein and mRNA expression levels of PACAP-38 and PAC1R in the detrusor muscle,along with the cAMP content,were higher(P<0.05).(3)Compared to the EA group,the EA+PACAP6-38 group showed a less organized arrangement of muscle fibers in the detrusor muscle tissue,larger intercellular space,monocyte infltration,and considerable tissue edema.The changes in bladder initial pressure and leak point pressure were not significant(P>0.05),while the maximum cystometric capacity and bladder compliance were lower(P<0.05).The changes in the protein and mRNA expressions of PACAP-38 within the detrusor muscle were not signifcant(P>0.05),whereas the protein and mRNA expressions of PAC1R were reduced(P<0.05),and the cAMP content within the detrusor muscle was lower(P<0.05).Conclusion:EA can ameliorate the uninhibited contractile condition of the detrusor muscle in the bladder following SSCI.By mediating the PACAP-cAMP signaling pathway,it reduces the pathological damage to the detrusor muscle,thereby improving bladder function.展开更多
Triterpenoids have been described in Andrographis paniculata. Oleanolic acid exhibits high biological activity and is widely used in the clinic, and β-sitosterol not only has good biological activity but also plays a...Triterpenoids have been described in Andrographis paniculata. Oleanolic acid exhibits high biological activity and is widely used in the clinic, and β-sitosterol not only has good biological activity but also plays an important physiological role in plants.However, analysis of the biosynthetic pathway of triterpenoids in Andrographis paniculata has not been reported. Here, we provide the first report of the isolation and identification of nine 2, 3-oxidosqualene cyclases(ApOSC3 to ApOSC11) from A. paniculata. The results showed that ApOSC4 represented a monofunctional synthase that could convert 2, 3-oxidosqualene to β-amyrin. ApOSC5 as a bifunctional 2, 3-oxidosqualene cyclases, could transfer 2, 3-oxidosqualene to β-amyrin and α-amyrin. ApOSC6 to ApOSC8 composed the multifunctional 2, 3-oxidosqualene cyclases that could convert 2, 3-oxidosqualene to β-amyrin, α-amyrin and one or two undetermined triterpenoids. This study provides a better understanding of the biosynthetic pathway of triterpenoids in A. paniculata, and the discovery of multifunctional 2, 3-oxidosqualene cyclases ApOSC5 to ApOSC8 of the facilitates knowledge of the compounds diversity in A. paniculata.展开更多
Effects of fish oil on β-adrenoceptors as well as the activity of adenylate cyclase (AC) on rat myocardial membrane were investigated.Supplementation with fish oil had no significant effect on basal activity of AC on...Effects of fish oil on β-adrenoceptors as well as the activity of adenylate cyclase (AC) on rat myocardial membrane were investigated.Supplementation with fish oil had no significant effect on basal activity of AC on myocardial membrane whereas it could markedly inhibit the AC activity stimulated by isoproterenol (ISO). Radioligand binding assays showed that supplementation with fish oil had no effect on Bmax and Kd, compared with saline control. However, supplementation with sheep oil could markedly reduce both the Kd and Bmax, compared with saline control. And the Kd of sheep oil group was greatly decreased than that of fish oil group. The results suggested that supplementation with fish oil mainly affected the activation of AC, not β-adrenoceptor itself.展开更多
The levels of the second messenger cyclic nucleotides,cAMP and cGMP are carefully regulated in all cells by the activity of a series of adenylyl and guanylyl cyclases and cyclic nucleotide phosphodiesterases(PDEs).Mos...The levels of the second messenger cyclic nucleotides,cAMP and cGMP are carefully regulated in all cells by the activity of a series of adenylyl and guanylyl cyclases and cyclic nucleotide phosphodiesterases(PDEs).Most of the functions of these second messengers are mediated by activation of cyclic nucleotide dependent kinases or other discrete cyclic nucleotide binding proteins.Furthermore,the regulation and function of all of these enzymes are greatly influenced by the cellular and subcellular compartments in which they are localized.In this talk I will discuss several examples of cAMP-regulated cellular function that depend on the simultaneous,coordinated phosphorylation of multiple control points as determined by phosphoproteomic analysis of cells treated with and without selective phosphodiesterase inhibitors.The data strongly suggest that multiple PDEs work in a synergistic manner to coordinate different functional pools of cAMP.These different pools in turn coordinate not one,but many different steps to yield the final control of cellular function.The data imply that we likely therefore will need to consider a number of new and revised ways to think about cAMP regulation of cellular functions and also about drug design.For example,several different PDEs may need to be inhibited in order to produce meaningful pharmacological effects.The data also imply that the much of this cAMP regulation occurs as stochastic processes in different compartments in the cell.展开更多
Parkinson's disease(PD) is the second most common neurodegenerative disease and is typically associated with progressive motor and non-motor dysfunctions.Currently, dopamine replacement therapy is mainly used to r...Parkinson's disease(PD) is the second most common neurodegenerative disease and is typically associated with progressive motor and non-motor dysfunctions.Currently, dopamine replacement therapy is mainly used to relieve the motor symptoms, while its long-term application can lead to various complications and does not cure the disease. Numerous studies have demonstrated that many brain-gut peptides have neuroprotective effects in vivo and in vitro, and may be a promising treatment for PD. In recent years, some progress has been made in studies on the neuroprotective effects of some newly-discovered braingut peptides, such as glucagon-like peptide 1, pituitary adenylate cyclase activating polypeptide, nesfatin-1, and ghrelin. However, there is still no systematic review on the neuroprotective effects common to these peptides. Thus,here we review the neuroprotective effects and the associated mechanisms of these four peptides, as well as other brain-gut peptides related to PD, in the hope of providing new ideas for the treatment of PD and related clinical research.展开更多
BACKGROUND The utility of novel oral soluble guanylate cyclase(sGC)stimulators(vericiguat and riociguat),in patients with reduced or preserved ejection fraction heart failure(HFrEF/HFpEF)is currently unclear.AIM To de...BACKGROUND The utility of novel oral soluble guanylate cyclase(sGC)stimulators(vericiguat and riociguat),in patients with reduced or preserved ejection fraction heart failure(HFrEF/HFpEF)is currently unclear.AIM To determine the efficacy and safety of sGC stimulators in HF patients.METHODS Multiple databases were searched to identify relevant randomized controlled trials(RCTs).Data on the safety and efficacy of sGC stimulators were compared using relative risk ratio(RR)on a random effect model.RESULTS Six RCTs,comprising 5604 patients(2801 in sGC stimulator group and 2803 placebo group)were included.The primary endpoint(a composite of cardiovascular mortality and first HF-related hospitalization)was significantly reduced in patients receiving sGC stimulators compared to placebo[RR 0.92,95%confidence interval(CI):0.85-0.99,P=0.02].The incidence of total HF-related hospitalizations were also lower in sGC group(RR 0.91,95%CI:0.86-0.96,P=0.0009),however,sGC stimulators had no impact on all-cause mortality(RR 0.96,95%CI:0.86-1.07,P=0.45)or cardiovascular mortality(RR 0.94,95%CI:0.83-1.06,P=0.29).The overall safety endpoint(a composite of hypotension and syncope)was also similar between the two groups(RR 1.50,95%CI:0.93-2.42,P=0.10).By contrast,a stratified subgroup analysis adjusted by type of sGC stimulator and HF(vericiguat vs riociguat and HFrEF vs HFpEF)showed near identical rates for all safety and efficacy endpoints between the two groups at a mean follow-up of 19 wk.For the primary composite endpoint,the number needed to treat was 35,the number needed to harm was 44.CONCLUSION The use of vericiguat and riociguat in conjunction with standard HF therapy,shows no benefit in terms of decreasing HF-related hospitalizations or mortality.展开更多
The present study established a mouse model of depression induced by unpredictable chronic mild stress. The model mice were treated with Yulangsan polysaccharide (YLSPS; 150, 300 and 600 mg/kg) for 21 days, and comp...The present study established a mouse model of depression induced by unpredictable chronic mild stress. The model mice were treated with Yulangsan polysaccharide (YLSPS; 150, 300 and 600 mg/kg) for 21 days, and compared with fluoxetine-treated and normal control groups. Enzyme-linked immunosorbent assay, radioimmunity and immunohistochemical staining showed that following treatment with YLSPS (300 and 600 mg/kg), monoamine neurotransmitter levels, prefrontal cortex adenylate cyclase activity and hippocampal brain-derived neurotrophic factor expression were significantly elevated, and depression-like behaviors were improved. Open-field and novelty-suppressed feeding tests showed that mouse activity levels were increased and feeding latency was shortened following treatment. Our results indicate that YLSPS inhibits depression by upregulating monoamine neurotransmitters, prefrontal cortex adenylate cyclase activity and hippocampal brain-derived neurotrophic factor expression.展开更多
Colorectal cancer(CRC) is a major cause of cancerrelated mortality and morbidity worldwide. While improved treatments have enhanced overall patient outcome, disease burden encompassing quality of life, cost of care, a...Colorectal cancer(CRC) is a major cause of cancerrelated mortality and morbidity worldwide. While improved treatments have enhanced overall patient outcome, disease burden encompassing quality of life, cost of care, and patient survival has seen little benefit. Consequently, additional advances in CRC treatments remain important, with an emphasis on preventative measures. Guanylyl cyclase C(GUCY2C), a transmembrane receptor expressed on intestinal epithelial cells, plays an important role in orchestrating intestinal homeostatic mechanisms. These effects are mediated by the endogenous hormones guanylin(GUCA2A) and uroguanylin(GUCA2B), which bind and activate GUCY2 C to regulate proliferation, metabolism and barrier function in intestine. Recent studies have demonstrated a link between GUCY2 C silencing and intestinal dysfunction, including tumorigenesis. Indeed, GUCY2 C silencing by the near universal loss of its paracrine hormone ligands increases colon cancer susceptibility in animals and humans. GUCY2C's role as a tumor suppressor has opened the door to a new paradigm for CRC prevention by hormone replacement therapy using synthetic hormone analogs, such as the FDA-approved oral GUCY2 C ligand linaclotide(Linzess^(TM)). Here we review the known contributions of the GUCY2 C signaling axis to CRC, and relate them to a novel clinical strategy targeting tumor chemoprevention.展开更多
Oral submucous fibrosis (OSF) is a potentially malignant disorder that is characterized by a progressive fibrosis in the oral submucosa. Arecoline, an alkaloid compound of the areca nut, is reported to be a major ae...Oral submucous fibrosis (OSF) is a potentially malignant disorder that is characterized by a progressive fibrosis in the oral submucosa. Arecoline, an alkaloid compound of the areca nut, is reported to be a major aetiological factor in the development of OSF. Low-power laser irradiation (LPLI) has been reported to be beneficial in fibrosis prevention in different damaged organs. The aim of this study was to investigate the potential therapeutic effects of LPLI on arecoline-induced fibrosis. Arecoline- stimulated human gingival fibroblasts (HGFs) were treated with or without LPLI. The expression levels of the fibrotic marker genes alpha-smooth muscle actin (a-SMA) and connective tissue growth factor (CTGF/CCN2) were analysed by quantitative real- time reverse transcription polymerase chain reaction (RT-PCR) and western blots. In addition, the transcriptional activity of CCN2 was further determined by a reporter assay. The results indicated that arecoline increased the messenger RNA and protein expression of CCN2 and a-SMA in HGF. Interestingly, both LPLI and forskolin, an adenylyl cyclase activator, reduced the expression of arecoline-mediated fibrotic marker genes and inhibited the transcriptional activity of CCN2. Moreover, pretreatment with SQ22536, an adenylyl cyclase inhibitor, blocked LPLI's inhibition of the expression of arecoline-mediated fibrotic marker genes. Our data suggest that LPLI may inhibit the expression of arecoline-mediated fibrotic marker genes via the cAMP signalling pathway.展开更多
Pituitary adenylate cyclase activating polypeptide (PACAP) has a wide range of biological functions. We cloned the full-length cDNAs encoding PACAP and PACAP-related peptide (PRP) from the brain of largemouth bass...Pituitary adenylate cyclase activating polypeptide (PACAP) has a wide range of biological functions. We cloned the full-length cDNAs encoding PACAP and PACAP-related peptide (PRP) from the brain of largemouth bass (Micropterus salmoides) and used real-time quantitative PCR to detect PRP- PACAP mRNA expression. The PRP-PACAP cDNA has two variants expressed via alternative splicing: a long form, which encodes both PRP and PACAP, and a short form, which encodes only PACAR Sequence analysis results are consistent with a higher conservation of PACAP than PRP peptide sequences. The expression of PACAP-Iong and PACAP-short transcripts was highest in the forebrain, followed by the medulla, midbrain, pituitary, stomach, cerebellum, intestine, and kidney; however, these transcripts were either absent or were weakly expressed in the muscle, spleen, gill, heart, fatty tissue, and liver. The level of PACAP-short transcript expression was significantly higher than expression of the long transcript in the forebrain, cerebella, pituitary and intestine, but lower than that of the long transcript in the stomach. PA CAP- long and PACAP-short transcripts were first detected at the blastula stage of embryogenesis, and the level of expression increased markedly between the muscular contraction stage and 3 d post hatch (dph). The expression of PACAP-long and PACAP-short transcripts decreased significantly in the brain following 4 d fasting compared with the control diet group. The down-regulation effect was enhanced as fasting continued. Conversely, expression levels increased significantly after 3 d of re-feeding. Our results suggest that PRP- PA CAP acts as an important factor in appetite regulation in largemouth bass.展开更多
This review provides an overview of diterpene synthases which were initially identified via genetic and/or biochemical means,traversing all organisms researched to date.
In this study,we aimed at developing an efficient biocatalytic process for bio-production of cyclic adenosine monophosphate(c AMP)from adenosine triphosphate(ATP).First,adenylate cyclase from Escherichia coli MG1655(E...In this study,we aimed at developing an efficient biocatalytic process for bio-production of cyclic adenosine monophosphate(c AMP)from adenosine triphosphate(ATP).First,adenylate cyclase from Escherichia coli MG1655(EAC)and Bordetella Pertussis(BAC)were expressed in E.coli BL21(DE3)and comparatively analyzed for their activities.As a result,EAC from E.coli MG1655 exhibited a higher activity.However,amount of EAC were obtained in an insoluble form.Therefore,we expressed the first 446 amino acids of EAC(EAC446)to avoid the inclusion body.The effects of induction temperature,incubation time,and incubation p H were further evaluated to improve the expression of EAC446.Subsequently,the reaction process for the production of c AMP with ATP as a starting material was investigated.As none of c AMP was detected in the whole-cell based biocatalytic process,the reaction catalyzed by the crude enzyme was determined for c AMP production.What's more,the reaction temperature,reaction p H,metal ion additives and substrate concentration was optimized,and the maximum c AMP production of 18.45 g·L^-1was achieved with a yield of 95.4%after bioconversion of 6 h.展开更多
BACKGROUND Major depressive disorder(MDD)is a highly disabling psychiatric syndrome associated with deficits of specific subpopulations of cortical GABAergic interneurons;however,the underlying molecular mechanism rem...BACKGROUND Major depressive disorder(MDD)is a highly disabling psychiatric syndrome associated with deficits of specific subpopulations of cortical GABAergic interneurons;however,the underlying molecular mechanism remains unknown.Type 3 adenylyl cyclase(ADCY3,AC3),which is important for neuronal excitability,has been implicated in MDD in a genome-wide association study in humans.Moreover,a study reported that ablation of AC3 in mice caused similar symptoms as MDD patients.AIM To determine if disruption of the AC3 gene in different subtypes of GABAergic interneurons of mice causes depression-like behaviors.METHODS Using immunohistochemistry,we investigated the expression of AC3 in two major subtypes GABAergic interneurons:Somatostatin-positive(SST+)and parvalbumin-positive(PV+)neurons.Genetic manipulations were used to selectively disrupt AC3 expression in SST+or PV+interneurons.A series of behavior tests including rotarod test,open field test(OFT),elevated plus maze test(EPM),forced swimming test(FST),and tail suspension test(TST)were used to evaluate the motor ability,anxiety-and depression-like behaviors,respectively.RESULTS Our results indicate that approximately 90.41%of SST+and 91.22%of PV+interneurons express AC3.After ablation of AC3 in SST+interneurons,the mice spent comparable time in the center area in OFT,but significantly less time in the open arms and low frequency of entries to the open arms in EPM.Furthermore,these mice showed prolonged immobility in FST and more freezing in TST.However,there were no significant changes in these behaviors after specific disruption of AC3 in PV+interneurons.CONCLUSION This study indicates that ablation of AC3 in SST+interneurons of mice increases anxiety-and depression-like behaviors in mice,supporting the general hypothesis that decreased AC3 activity may play a role in human depression.展开更多
AIM To evaluate whether non-steroidal anti-inflammatory drugs(NSAIDs)-induced gastropathy is a clinically predictive model of referred visceral hypersensitivity.METHODS Gastric ulcer pain was induced by the oral admin...AIM To evaluate whether non-steroidal anti-inflammatory drugs(NSAIDs)-induced gastropathy is a clinically predictive model of referred visceral hypersensitivity.METHODS Gastric ulcer pain was induced by the oral administration of indomethacin to male,CD1 mice(n = 10/group) and then assessed by measuring referred abdominal hypersensitivity to tactile application. A diverse range of pharmacological mechanisms contributing to the pain were subsequently investigated. These mechanisms included: transient receptor potential(TRP),sodium and acid-sensing ion channels(ASICs) as well as opioid receptors and guanylate cyclase C(GC-C). RESULTS Results showed that two opioids and a GC-C agonist,morphine,asimadoline and linaclotide,respectively,the TRP antagonists,AMG9810 and HC-030031 and the sodium channel blocker,carbamazepine,elicited a dose-and/or time-dependent attenuation of referred visceral hypersensitivity,while the ASIC blocker,amiloride,was ineffective at all doses tested. CONCLUSION Together,these findings implicate opioid receptors,GC-C,and sodium and TRP channel activation as possible mechanisms associated with visceral hypersensitivity. More importantly,these findings also validate NSAID-induced gastropathy as a sensitive and clinically predictive mouse model suitable for assessing novel molecules with potential pain-attenuating properties.展开更多
基金supported by grants from the National Natural Science Foundation of China (Grant No.32102433)。
文摘Carotenoids are essential components in tea quality, contributing to leaf color and aroma. However, little information about carotenoids in different tea cultivars and their biosynthesis regulation mechanism during leaf development is known. Here we analyzed carotenoids by HPLC in the buds and leaves of 113 tea cultivars harvested on the same day. By profile clustering, carotenoids were divided into five groups. Same group cultivars displayed divergence in the total content of carotenoids but a similar molar ratio. To figure out the molecular mechanisms of this phenomenon, we further characterized all functional lycopene cyclases, which are the branch point of the carotenoid biosynthesis pathway. Two β-lycopene cyclases(CsLCYB1 and CsLCYB2) and one ε-lycopene cyclase(CsLCYE1) were cloned. Subcellular localization analysis showed that all cloned CsLCYs were localized in plastids. Enzyme activity assays in E. coli indicated both CsLCYBs catalyzed lycopene into β-carotene, and CsLCYE1 produced δ-carotene and ε-carotene. We found CsLCYB1 and CsLCYE1 predominantly expressed in leaf, while CsLCYB2was mainly expressed during flowering stages. Suppression by antisense oligonucleotides reduced CsLCYB1 and CsLCYE1 transcripts and led to reduction of both β,β-branch and β,ε-branch carotenoids in leaf. The expression levels of CsLCYB1 showed a significant positive correlation withβ,β-branch carotenoids in leaf. Our study provides carotenoid profiles of different tea cultivars, which can assist tea producers in selecting cultivars of interest. Meanwhile, we proposed the molecular mechanism of carotenoids reflecting the tenderness of tea plant leaf from a metabolic flux perspective, and suggested lycopene cyclase that could be applied to the breeding of tea varieties with different branch carotenoids.
基金supported by Jiangsu Province Natural Science Foundation for Distinguished Young Scholars(BK20190035)Jiangsu Government Scholarship for Overseas Studies(JS-2019-053)+6 种基金Key Research&Development plan of Jiangsu Province(BE2019001)the National Natural Science Foundation of China(2217080044 and 22008119)the Natural Science Foundation of Jiangsu Province(BK20202002)the National Key Research and Development Program of China(2021YFC2101204)the Program for Changjiang Scholars and Innovative Research Team in University(IRT_14R28)the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)the Jiangsu Synergetic Innovation Center for Advanced Bio-Manufacture.
文摘Adenylate cyclase(AC)is the key enzyme that catalyzes the formation of cAMP from ATP.In this study,we discovered two novel class Ⅲ ACs with a halophilic property from Thermobifida halotolerans DSM 44931(ThAC)and Haloactinopolyspora alba DSM 45211(HaAC),respectively.The recombinant ThAC and HaAC were expressed in Escherichia coli with molecular weights of 36.1 and 36.0 kDa respectively.The presence of 2500 and 2200 mmolL^(-1)1 NaCl significantly enhanced the enzyme activities of ThAC and HaAC,with 22-fold and 7.4-fold higher activities compared to those without NaCl,respectively.Several divalent metal ions were found to activate the recombinant ACs to different extents,and the optimal metal ion was Mg^(2+)for both ThAC and HaAC with concentrations of 80 mmol·L^(-1) and 40 mmol·L^(-1) respectively.Purified ThAC and HaAC had the optimal specific activities((4.59±0.35)×10^(4) and(7.76±0.52)×10^(4) U·mg^(-1))and catalytic efficiency(4.47 and 5.30 L·mmol^(-1)·s^(-1))at 45℃ and 40℃ respectively,while the optimum pH of both two recombinant ACs was 10.0.This is the first report of the halophilic Class III ACs,which could make new contributions to explore and study ACs for further associated investigations.
基金supported by grants from the National Natural Science Foundation of China(32100581)the International Collaborative Research Program of Wenzhou-Kean University(ICRP202202)the Wenzhou-Kean University Institute for International Frontier Interdisciplinary Studies(KY20250603000445).
文摘Cyclic nucleotide monophosphates(cNMPs),including 3′,5′-cyclic adenosine monophosphate(cAMP)and 3′,5′-cyclic guanosine monophosphate,are well-established signaling molecules essential for finely tuned plant responses to environmental and developmental stimuli(Kwiatkowski et al.,2024a).3′,5′-cNMPs are synthesized by cyclases,notably adenylate cyclases(ACs)and guanylate cyclases,that catalyze ATP and GTP to cAMP and 3′,5′-cyclic guanosine monophosphate.Highly conserved amino acid motifs derived from the catalytic centers of ACs/guanylate cyclases across species diagnostics for cyclase activities in the early 2000s(Gehring,2010)have led to the identification of>100 candidate cyclases in Arabidopsis thaliana,many of which have been experimentally validated(Kwiatkowski et al.,2024a).Unlike in mammals or bacteria,they constitute a part of complex proteins with varied domain architectures where the cyclases moonlight(Turek et al.,2024).Such regulatory function is evidenced through ACs operating as cryptic sites in transporters and disease-related proteins(Wong et al.,2023),some of which have been identified in crop plants such as maize and jujube,where they affect fundamental biological processes including germination,root growth,flowering,and responses to heat stress(Yang et al.,2021;Liu et al.,2023).
基金supported by Agriculture and Agri-Food Canada’s Abase(J-002364)the ASC-09 Soybean Cluster Activity#7A(J-002080)grants to S.D.
文摘Dear Editor,Glyceollins are isoflavonoid-derived metabolites produced by soybean that hold great promise in improving human and animal health.The recurrent use of antibiotics in animal production has led to the emergence of antibiotic resistance,which is causing a global challenge for public health and food systems.Owing to their broad-spectrum antimicrobial properties,glyceollins are being proposed to replace antibiotics in the swine industry to reduce antibiotic-resistant microorganisms in the food supply(Zavadil,2020;Ika Irianti et al.,2023).
基金Supported by National Natural Science Foundation of China:82274666,82205255Natural Science Foundation of Hunan Province:2022JJ30036,2022JJ40312,20221140301+1 种基金Research Project of Education Department of Hunan Province:20C1432,21B0369Discipline of Integrated Traditional Chinese and Western Medicine of Hunan Province:2020ZXYJH23。
文摘Objective:To elucidate the underlying mechanism and effect of electroacupuncture(EA)on the neurogenic bladder following suprasacral spinal cord injury(ssCI).A rat model of detrusor hyperreflexia after SsCI was established to examine the urodynamics,detrusor muscle tissue morphology,the protein and mRNA expression levels of pituitary adenylate cyclase activating peptide(PACAP)and its receptor PAC1R,and cyclic adenosine monophosphate(cAMP)content in the detrusor muscle with a focus on the PACAPcAMP signaling pathway.Method:A total of 72 female SD rats were randomized into control group and sham operation group(n=12 per group)by using a random number table.The remaining 48 rats were established into the model of detrusor hyperreflexia after SsCI.After successful modeling,these rats were randomly assigned to model,EA,and EA+PACAP6-38 groups(n=12 per group).The unsuccessful modeled rats were used for exploratory observation.For the rats in EA group,"Ciliao(BL32)""Zhongji(CV3)",and"Sanyinjiao(SP6)"were needled and stimulated by EA.The PACAP receptor antagonist PACAP6-38 was administered intraperitoneally in the EA+PACAP6-38 group before EA,and EA was applied for seven consecutive days.After treatment,the urodynamics of the rats were analyzed,and hematoxylin and eosin staining was used to examine rat bladder detrusor tissue morphology.The expressions of PACAP-38 and PAC1R were detected by immunohistochemistry and Western blot.The mRNA expression levels of PACAP-38 and PAC1R were examined by RT-qPCR,while cAMP content was detected by ELISA.Results:(1)Compared with sham operation group,it was exhibited disarray in the transitional epithelium cells of the bladder in the modeled rats.The intercellular space was significantly widened,accompanied by inflammatory cell infiltration and noticeable tissue edema.Both the bladder initial pressure and leak point pressure of the rats were higher(P<0.01),whereas the maximum cystometric capacity and bladder compliance were lower(P<0.01).The protein and mRNA expression levels of PACAP-38 and PAC1R in the detrusor muscle,together with the cAMP content,were lower(P<0.05).(2)Compared with the model rats,the EA group showed reduced inflammatory response in the detrusor muscle tissue,with decreased monocyte infiltration and less severe tissue edema.The bladder smooth muscle cells exhibited increased integrity,and there was decreased cellular tissue edema,inflammatory cell infiltration,and fibroplasia.The bladder initial pressure and leak point pressure were lower(P<0.05),while the maximum cystometric capacity and bladder compliance were higher(P<0.01).The protein and mRNA expression levels of PACAP-38 and PAC1R in the detrusor muscle,along with the cAMP content,were higher(P<0.05).(3)Compared to the EA group,the EA+PACAP6-38 group showed a less organized arrangement of muscle fibers in the detrusor muscle tissue,larger intercellular space,monocyte infltration,and considerable tissue edema.The changes in bladder initial pressure and leak point pressure were not significant(P>0.05),while the maximum cystometric capacity and bladder compliance were lower(P<0.05).The changes in the protein and mRNA expressions of PACAP-38 within the detrusor muscle were not signifcant(P>0.05),whereas the protein and mRNA expressions of PAC1R were reduced(P<0.05),and the cAMP content within the detrusor muscle was lower(P<0.05).Conclusion:EA can ameliorate the uninhibited contractile condition of the detrusor muscle in the bladder following SSCI.By mediating the PACAP-cAMP signaling pathway,it reduces the pathological damage to the detrusor muscle,thereby improving bladder function.
基金supported by the National Natural Science Foundation of China (Nos. 81673547 and 81773830)the National High Technology Research and Development Program of China (863 Program No. 2015AA0200908)+2 种基金Beijing Natural Science Foundation Program and Scientific Research Key Program of Beijing Municipal Commission of Education (No.KZ201710025022)the Support Project for High-level Teachers in Beijing Municipal Universities in the Period of the 13th Five-year Plan (No. CIT&TCD20170324)the Key Project at Central Government Level the Ability Establishment of Sustainable Use for Valuable Chinese Medicine Resources (No. 2060302-1806-03)。
文摘Triterpenoids have been described in Andrographis paniculata. Oleanolic acid exhibits high biological activity and is widely used in the clinic, and β-sitosterol not only has good biological activity but also plays an important physiological role in plants.However, analysis of the biosynthetic pathway of triterpenoids in Andrographis paniculata has not been reported. Here, we provide the first report of the isolation and identification of nine 2, 3-oxidosqualene cyclases(ApOSC3 to ApOSC11) from A. paniculata. The results showed that ApOSC4 represented a monofunctional synthase that could convert 2, 3-oxidosqualene to β-amyrin. ApOSC5 as a bifunctional 2, 3-oxidosqualene cyclases, could transfer 2, 3-oxidosqualene to β-amyrin and α-amyrin. ApOSC6 to ApOSC8 composed the multifunctional 2, 3-oxidosqualene cyclases that could convert 2, 3-oxidosqualene to β-amyrin, α-amyrin and one or two undetermined triterpenoids. This study provides a better understanding of the biosynthetic pathway of triterpenoids in A. paniculata, and the discovery of multifunctional 2, 3-oxidosqualene cyclases ApOSC5 to ApOSC8 of the facilitates knowledge of the compounds diversity in A. paniculata.
文摘Effects of fish oil on β-adrenoceptors as well as the activity of adenylate cyclase (AC) on rat myocardial membrane were investigated.Supplementation with fish oil had no significant effect on basal activity of AC on myocardial membrane whereas it could markedly inhibit the AC activity stimulated by isoproterenol (ISO). Radioligand binding assays showed that supplementation with fish oil had no effect on Bmax and Kd, compared with saline control. However, supplementation with sheep oil could markedly reduce both the Kd and Bmax, compared with saline control. And the Kd of sheep oil group was greatly decreased than that of fish oil group. The results suggested that supplementation with fish oil mainly affected the activation of AC, not β-adrenoceptor itself.
文摘The levels of the second messenger cyclic nucleotides,cAMP and cGMP are carefully regulated in all cells by the activity of a series of adenylyl and guanylyl cyclases and cyclic nucleotide phosphodiesterases(PDEs).Most of the functions of these second messengers are mediated by activation of cyclic nucleotide dependent kinases or other discrete cyclic nucleotide binding proteins.Furthermore,the regulation and function of all of these enzymes are greatly influenced by the cellular and subcellular compartments in which they are localized.In this talk I will discuss several examples of cAMP-regulated cellular function that depend on the simultaneous,coordinated phosphorylation of multiple control points as determined by phosphoproteomic analysis of cells treated with and without selective phosphodiesterase inhibitors.The data strongly suggest that multiple PDEs work in a synergistic manner to coordinate different functional pools of cAMP.These different pools in turn coordinate not one,but many different steps to yield the final control of cellular function.The data imply that we likely therefore will need to consider a number of new and revised ways to think about cAMP regulation of cellular functions and also about drug design.For example,several different PDEs may need to be inhibited in order to produce meaningful pharmacological effects.The data also imply that the much of this cAMP regulation occurs as stochastic processes in different compartments in the cell.
基金supported by grants from the National Natural Science Foundation of China (31571054 and 81430024)the Excellent Innovative Team of Shandong Province and Taishan Scholars Construction Project, China
文摘Parkinson's disease(PD) is the second most common neurodegenerative disease and is typically associated with progressive motor and non-motor dysfunctions.Currently, dopamine replacement therapy is mainly used to relieve the motor symptoms, while its long-term application can lead to various complications and does not cure the disease. Numerous studies have demonstrated that many brain-gut peptides have neuroprotective effects in vivo and in vitro, and may be a promising treatment for PD. In recent years, some progress has been made in studies on the neuroprotective effects of some newly-discovered braingut peptides, such as glucagon-like peptide 1, pituitary adenylate cyclase activating polypeptide, nesfatin-1, and ghrelin. However, there is still no systematic review on the neuroprotective effects common to these peptides. Thus,here we review the neuroprotective effects and the associated mechanisms of these four peptides, as well as other brain-gut peptides related to PD, in the hope of providing new ideas for the treatment of PD and related clinical research.
文摘BACKGROUND The utility of novel oral soluble guanylate cyclase(sGC)stimulators(vericiguat and riociguat),in patients with reduced or preserved ejection fraction heart failure(HFrEF/HFpEF)is currently unclear.AIM To determine the efficacy and safety of sGC stimulators in HF patients.METHODS Multiple databases were searched to identify relevant randomized controlled trials(RCTs).Data on the safety and efficacy of sGC stimulators were compared using relative risk ratio(RR)on a random effect model.RESULTS Six RCTs,comprising 5604 patients(2801 in sGC stimulator group and 2803 placebo group)were included.The primary endpoint(a composite of cardiovascular mortality and first HF-related hospitalization)was significantly reduced in patients receiving sGC stimulators compared to placebo[RR 0.92,95%confidence interval(CI):0.85-0.99,P=0.02].The incidence of total HF-related hospitalizations were also lower in sGC group(RR 0.91,95%CI:0.86-0.96,P=0.0009),however,sGC stimulators had no impact on all-cause mortality(RR 0.96,95%CI:0.86-1.07,P=0.45)or cardiovascular mortality(RR 0.94,95%CI:0.83-1.06,P=0.29).The overall safety endpoint(a composite of hypotension and syncope)was also similar between the two groups(RR 1.50,95%CI:0.93-2.42,P=0.10).By contrast,a stratified subgroup analysis adjusted by type of sGC stimulator and HF(vericiguat vs riociguat and HFrEF vs HFpEF)showed near identical rates for all safety and efficacy endpoints between the two groups at a mean follow-up of 19 wk.For the primary composite endpoint,the number needed to treat was 35,the number needed to harm was 44.CONCLUSION The use of vericiguat and riociguat in conjunction with standard HF therapy,shows no benefit in terms of decreasing HF-related hospitalizations or mortality.
基金supported by the Scientific Research and Technology Development Program of Guangxi Zhuang Autonomous Region, No. 0630002-2Athe National Natural Science Foundation of China, No. 30960504
文摘The present study established a mouse model of depression induced by unpredictable chronic mild stress. The model mice were treated with Yulangsan polysaccharide (YLSPS; 150, 300 and 600 mg/kg) for 21 days, and compared with fluoxetine-treated and normal control groups. Enzyme-linked immunosorbent assay, radioimmunity and immunohistochemical staining showed that following treatment with YLSPS (300 and 600 mg/kg), monoamine neurotransmitter levels, prefrontal cortex adenylate cyclase activity and hippocampal brain-derived neurotrophic factor expression were significantly elevated, and depression-like behaviors were improved. Open-field and novelty-suppressed feeding tests showed that mouse activity levels were increased and feeding latency was shortened following treatment. Our results indicate that YLSPS inhibits depression by upregulating monoamine neurotransmitters, prefrontal cortex adenylate cyclase activity and hippocampal brain-derived neurotrophic factor expression.
基金Supported by NIH,No.R01CA170533,No.R01CA206026 and No.P30CA56036Targeted Diagnostic and Therapeutics,Inc.+2 种基金a Ruth L.Kirschstein National Research Service Award for Individual Predoctoral MD/PhD Fellows from the NIH,No.CA180500(To Blomain ES)a Ruth L.Kirschstein National Research Service Award for Individual Predoctoral MD/PhD Fellows from the NIH,No.F30 DK103492(To Merlino DJ)a Predoctoral Fellowship in Pharmacology/Toxicology from the PhR MA Foundation
文摘Colorectal cancer(CRC) is a major cause of cancerrelated mortality and morbidity worldwide. While improved treatments have enhanced overall patient outcome, disease burden encompassing quality of life, cost of care, and patient survival has seen little benefit. Consequently, additional advances in CRC treatments remain important, with an emphasis on preventative measures. Guanylyl cyclase C(GUCY2C), a transmembrane receptor expressed on intestinal epithelial cells, plays an important role in orchestrating intestinal homeostatic mechanisms. These effects are mediated by the endogenous hormones guanylin(GUCA2A) and uroguanylin(GUCA2B), which bind and activate GUCY2 C to regulate proliferation, metabolism and barrier function in intestine. Recent studies have demonstrated a link between GUCY2 C silencing and intestinal dysfunction, including tumorigenesis. Indeed, GUCY2 C silencing by the near universal loss of its paracrine hormone ligands increases colon cancer susceptibility in animals and humans. GUCY2C's role as a tumor suppressor has opened the door to a new paradigm for CRC prevention by hormone replacement therapy using synthetic hormone analogs, such as the FDA-approved oral GUCY2 C ligand linaclotide(Linzess^(TM)). Here we review the known contributions of the GUCY2 C signaling axis to CRC, and relate them to a novel clinical strategy targeting tumor chemoprevention.
基金supported by the Kaohsiung Municipal Ta-Tung Hospital(grant kmtth-102-010)the Kaohsiung Medical University in Taiwan under the grant“Aim for the Top Universities Grant”(KMU-TP103B08)
文摘Oral submucous fibrosis (OSF) is a potentially malignant disorder that is characterized by a progressive fibrosis in the oral submucosa. Arecoline, an alkaloid compound of the areca nut, is reported to be a major aetiological factor in the development of OSF. Low-power laser irradiation (LPLI) has been reported to be beneficial in fibrosis prevention in different damaged organs. The aim of this study was to investigate the potential therapeutic effects of LPLI on arecoline-induced fibrosis. Arecoline- stimulated human gingival fibroblasts (HGFs) were treated with or without LPLI. The expression levels of the fibrotic marker genes alpha-smooth muscle actin (a-SMA) and connective tissue growth factor (CTGF/CCN2) were analysed by quantitative real- time reverse transcription polymerase chain reaction (RT-PCR) and western blots. In addition, the transcriptional activity of CCN2 was further determined by a reporter assay. The results indicated that arecoline increased the messenger RNA and protein expression of CCN2 and a-SMA in HGF. Interestingly, both LPLI and forskolin, an adenylyl cyclase activator, reduced the expression of arecoline-mediated fibrotic marker genes and inhibited the transcriptional activity of CCN2. Moreover, pretreatment with SQ22536, an adenylyl cyclase inhibitor, blocked LPLI's inhibition of the expression of arecoline-mediated fibrotic marker genes. Our data suggest that LPLI may inhibit the expression of arecoline-mediated fibrotic marker genes via the cAMP signalling pathway.
基金Supported by the National Natural Science Foundation of China(No.31201985)the National Key Technology R&D Program of China(No.2012BAD26B03)
文摘Pituitary adenylate cyclase activating polypeptide (PACAP) has a wide range of biological functions. We cloned the full-length cDNAs encoding PACAP and PACAP-related peptide (PRP) from the brain of largemouth bass (Micropterus salmoides) and used real-time quantitative PCR to detect PRP- PACAP mRNA expression. The PRP-PACAP cDNA has two variants expressed via alternative splicing: a long form, which encodes both PRP and PACAP, and a short form, which encodes only PACAR Sequence analysis results are consistent with a higher conservation of PACAP than PRP peptide sequences. The expression of PACAP-Iong and PACAP-short transcripts was highest in the forebrain, followed by the medulla, midbrain, pituitary, stomach, cerebellum, intestine, and kidney; however, these transcripts were either absent or were weakly expressed in the muscle, spleen, gill, heart, fatty tissue, and liver. The level of PACAP-short transcript expression was significantly higher than expression of the long transcript in the forebrain, cerebella, pituitary and intestine, but lower than that of the long transcript in the stomach. PA CAP- long and PACAP-short transcripts were first detected at the blastula stage of embryogenesis, and the level of expression increased markedly between the muscular contraction stage and 3 d post hatch (dph). The expression of PACAP-long and PACAP-short transcripts decreased significantly in the brain following 4 d fasting compared with the control diet group. The down-regulation effect was enhanced as fasting continued. Conversely, expression levels increased significantly after 3 d of re-feeding. Our results suggest that PRP- PA CAP acts as an important factor in appetite regulation in largemouth bass.
基金This study was supported by grants from the National Key Laboratory of Plant Molecular Genetics,and from the State Key Laboratory of Phytochemistry and Plant Resources in West China.
文摘This review provides an overview of diterpene synthases which were initially identified via genetic and/or biochemical means,traversing all organisms researched to date.
基金The National Natural Science Foundation of China(Grant No.21576134,Grant No.21606127,Grant No.21390200,Grant No.21706126)the National Key Research and Development Program of China(Grant No.2016YFA0204300)the Top-notch Academic Programs Project of Jiangsu Higher Education Institutions。
文摘In this study,we aimed at developing an efficient biocatalytic process for bio-production of cyclic adenosine monophosphate(c AMP)from adenosine triphosphate(ATP).First,adenylate cyclase from Escherichia coli MG1655(EAC)and Bordetella Pertussis(BAC)were expressed in E.coli BL21(DE3)and comparatively analyzed for their activities.As a result,EAC from E.coli MG1655 exhibited a higher activity.However,amount of EAC were obtained in an insoluble form.Therefore,we expressed the first 446 amino acids of EAC(EAC446)to avoid the inclusion body.The effects of induction temperature,incubation time,and incubation p H were further evaluated to improve the expression of EAC446.Subsequently,the reaction process for the production of c AMP with ATP as a starting material was investigated.As none of c AMP was detected in the whole-cell based biocatalytic process,the reaction catalyzed by the crude enzyme was determined for c AMP production.What's more,the reaction temperature,reaction p H,metal ion additives and substrate concentration was optimized,and the maximum c AMP production of 18.45 g·L^-1was achieved with a yield of 95.4%after bioconversion of 6 h.
基金Supported by National Natural Science Foundation of China,No.81771208 and No.81971043。
文摘BACKGROUND Major depressive disorder(MDD)is a highly disabling psychiatric syndrome associated with deficits of specific subpopulations of cortical GABAergic interneurons;however,the underlying molecular mechanism remains unknown.Type 3 adenylyl cyclase(ADCY3,AC3),which is important for neuronal excitability,has been implicated in MDD in a genome-wide association study in humans.Moreover,a study reported that ablation of AC3 in mice caused similar symptoms as MDD patients.AIM To determine if disruption of the AC3 gene in different subtypes of GABAergic interneurons of mice causes depression-like behaviors.METHODS Using immunohistochemistry,we investigated the expression of AC3 in two major subtypes GABAergic interneurons:Somatostatin-positive(SST+)and parvalbumin-positive(PV+)neurons.Genetic manipulations were used to selectively disrupt AC3 expression in SST+or PV+interneurons.A series of behavior tests including rotarod test,open field test(OFT),elevated plus maze test(EPM),forced swimming test(FST),and tail suspension test(TST)were used to evaluate the motor ability,anxiety-and depression-like behaviors,respectively.RESULTS Our results indicate that approximately 90.41%of SST+and 91.22%of PV+interneurons express AC3.After ablation of AC3 in SST+interneurons,the mice spent comparable time in the center area in OFT,but significantly less time in the open arms and low frequency of entries to the open arms in EPM.Furthermore,these mice showed prolonged immobility in FST and more freezing in TST.However,there were no significant changes in these behaviors after specific disruption of AC3 in PV+interneurons.CONCLUSION This study indicates that ablation of AC3 in SST+interneurons of mice increases anxiety-and depression-like behaviors in mice,supporting the general hypothesis that decreased AC3 activity may play a role in human depression.
文摘AIM To evaluate whether non-steroidal anti-inflammatory drugs(NSAIDs)-induced gastropathy is a clinically predictive model of referred visceral hypersensitivity.METHODS Gastric ulcer pain was induced by the oral administration of indomethacin to male,CD1 mice(n = 10/group) and then assessed by measuring referred abdominal hypersensitivity to tactile application. A diverse range of pharmacological mechanisms contributing to the pain were subsequently investigated. These mechanisms included: transient receptor potential(TRP),sodium and acid-sensing ion channels(ASICs) as well as opioid receptors and guanylate cyclase C(GC-C). RESULTS Results showed that two opioids and a GC-C agonist,morphine,asimadoline and linaclotide,respectively,the TRP antagonists,AMG9810 and HC-030031 and the sodium channel blocker,carbamazepine,elicited a dose-and/or time-dependent attenuation of referred visceral hypersensitivity,while the ASIC blocker,amiloride,was ineffective at all doses tested. CONCLUSION Together,these findings implicate opioid receptors,GC-C,and sodium and TRP channel activation as possible mechanisms associated with visceral hypersensitivity. More importantly,these findings also validate NSAID-induced gastropathy as a sensitive and clinically predictive mouse model suitable for assessing novel molecules with potential pain-attenuating properties.