As important natural and pharmaceutical motifs,the catalytic construction of structurally diverse 3,3-disubstituted oxindoles often requires elaborate synthetic efforts on optimizations.Herein,we developed a simple an...As important natural and pharmaceutical motifs,the catalytic construction of structurally diverse 3,3-disubstituted oxindoles often requires elaborate synthetic efforts on optimizations.Herein,we developed a simple and divergent approach for constructing reverse-prenylated and prenylated oxindoles launched by Ni catalysis with bulk chemical isoprene.Using C3-unsubstituted oxindoles as starting materials,mono reverse-prenylation was demonstrated in high chemo-and regioselectivities facilitated by the combination of Ni(0)and monodentate phosphine ligand.Using the obtained reverse-prenylated oxindoles as versatile synthon,substitutions at the pseudobenzylic position with various electrophiles created vicinal quaternary centers in a concise way.With the help of additives(PPh3 and NaH),air could be directly used as green oxidant to construct prenylated and reverse-prenylatedα-hydroxy-oxindoles divergently from the same substrates.In situ esterification of prenylatedα-hydroxy-oxindoles allowed subsequent Friedel-Crafts substitutions with diverse nucleophiles to deliver prenyl substituted dimeric or spiro-oxindoles.This protocol provides a divergent synthetic approach for the construction of highly functionalized 3,3-disubstituted oxindoles,which have been otherwise difficult to access in a unified approach.展开更多
Five new flavonoid derivatives,cajavolubones A-E(1-5),along with six known analogues(6-11)were isolated from Cajanus volubilis,and their structures were elucidated by spectroscopic analysis and quantum chemical calcul...Five new flavonoid derivatives,cajavolubones A-E(1-5),along with six known analogues(6-11)were isolated from Cajanus volubilis,and their structures were elucidated by spectroscopic analysis and quantum chemical calculations.Cajavolubones A and B(1 and 2)were identified as two geranylated chalcones.Cajavolubone C(3)was a prenylated flavone,while cajavolubones D and E(4 and 5)were two prenylated isoflavanones.Compounds 3,8,9 and 11 displayed cytotoxicity against HCT-116 cancer cell line.展开更多
Prenylated flavonoids are mainly distributed in Leguminosae and Moraceae plants, and they have been reported to possess various biological activities. Previously, we have reported a prenylated isoflavonoid, isoangusto...Prenylated flavonoids are mainly distributed in Leguminosae and Moraceae plants, and they have been reported to possess various biological activities. Previously, we have reported a prenylated isoflavonoid, isoangustone A(IAA) from licorice(Glycyrrhiza uralensis), which induces apoptosis in colorectal cancer cells by disrupting mitochondrial functions. In the present study, we compared a group of flavonoids from licorice with IAA for their anti-proliferation activities and effects on intracellular signaling. The results indicated that the isoprenyl groups on the A and B rings, the hydroxyl groups at the ortho position of isoprenyl on A ring and the conjugated plane of C ring might contribute to the anti-cancer activity of prenylated flavonoids. Based on the above structure-activity relationship, we further identified four prenylated flavonoids with similar anti-cancer activities from licorice. Taken together, our present study established a preliminary structure-activity relationship of anti-cancer prenylated flavonoids, and our data provided important leading compounds from licorice, which deserved further research and development.展开更多
Six new prenylated flavonoid glycosides,including four new furan-flavonoid glycosides wushepimedoside A–D(1–4)and two new prenyl flavonoid derivatives wushepimedoside E–F(5–6),and one know analog epimedkoreside B(...Six new prenylated flavonoid glycosides,including four new furan-flavonoid glycosides wushepimedoside A–D(1–4)and two new prenyl flavonoid derivatives wushepimedoside E–F(5–6),and one know analog epimedkoreside B(7)were isolated from biotransformation products of the aerial parts of Epimedium wushanense.Their structures were elucidated according to comprehensive analysis of HR-MS and NMR spectroscopic data,and the absolute configurations were assigned using experimental and calculated electronic circular dichroism(ECD)data.The regulatory activity of compounds 1–7 on the production of testosterone in primary rat Leydig cells were investigated,and 4 and 5 exhibited testosterone production-promoting activities.Molecular docking analysis suggested that bioactive compounds 4 and 5 showed the stable binding with 3β-HSD and 4 also had good affinity with Cyp17A1,which suggested that these compounds may regulate testosterone production through stimulating the expression of the above two key proteins.展开更多
2-[3,5-Di-O-β-D-glucosyl-4-(3-methylbut-2-enyl)phenyl]benzofuran-6-ol,a new prenylated arylbenzofuran derivative was isolated from Morus alba L.Its structure was elucidated by various spectroscopic methods including ...2-[3,5-Di-O-β-D-glucosyl-4-(3-methylbut-2-enyl)phenyl]benzofuran-6-ol,a new prenylated arylbenzofuran derivative was isolated from Morus alba L.Its structure was elucidated by various spectroscopic methods including MS,~1H NMR,^(13)C NMR,DEPT,~1H-~1HCOSY,HMQC and HMBC.展开更多
In continuation of our chemical investigation on some medicinal plants of the genus Tephrosia, re-investigation of the methylenechloride/methanol (1:1) extract of the air-dried aerial part of Tephrosia apollinea af...In continuation of our chemical investigation on some medicinal plants of the genus Tephrosia, re-investigation of the methylenechloride/methanol (1:1) extract of the air-dried aerial part of Tephrosia apollinea afforded a new prenylated flavonoid 1, in addition to an aromatic ester, a sesquiterpene, a lignan and several known prenylated flavonoids. The structures were established by (^1H NMR, ^13C NMR, DEPT, ^1H-^1H COSY, HMQC, HMBC, NOESY and HRMS). Relative configurations of 9 and 10 were confirmed by X-ray analysis.展开更多
An efficient approach has been developed for the synthesis of naturally occurring prenylated chalcones viz. kanzonol C (1), stipulin (2), crotaorixin (3), medicagenin (4), licoagrochalcone A (5) and abyssino...An efficient approach has been developed for the synthesis of naturally occurring prenylated chalcones viz. kanzonol C (1), stipulin (2), crotaorixin (3), medicagenin (4), licoagrochalcone A (5) and abyssinone D (6) along with the pyranochalcones paratocarpin C (7), anthyllisone (8) and 3-O-methylabyssinone A (9). The key step of the synthesis is a Claisen-Schmidt condensation. Subsequently, their anti-inflammatory effects were investigated in lipopolysaccharides (LPSs)-induced RAW-264.7 macrophages. Of the synthesized chalcones, compounds 5 (IC50= 10.41 μmol[L), 6 (IC50= 9.65 μmol/L) and 8 (IC50= 15.34 μmol/L) show remarkable activity with no cytotoxicity. Compound 9 (IC50 = 4.5 μmol/L) exhibits maximum (83.6%) nitric oxide (NO) inhibition, but shows slight cytotoxicity. The results reveal that the chalcones bearing the prenyl group at 3- and/or 5-position on ring A (acetophenone moiety), i.e., 1-4 and 7 show weak, or no inhibition activity, whereas chalcones having the prenyl group only on ring B (aldehyde part), i.e., 5, 6 and 8 show significant activity on the production of inflammatory mediated NO with no cytotoxicity.展开更多
A new prenylated flavonol, maackiaflavonol, was isolated from the ethanol extract of the roots of Maackia tenuifolia. Its structure was elucidated as 7-hydrox-8-prenylflavonol by means of spectroscopic analysis (UV, I...A new prenylated flavonol, maackiaflavonol, was isolated from the ethanol extract of the roots of Maackia tenuifolia. Its structure was elucidated as 7-hydrox-8-prenylflavonol by means of spectroscopic analysis (UV, IR, MS, NMR and 1H-1H COSY) and confirmed by total synthesis.展开更多
Four hitherto unknown prenylated coumarins,namely 600-O-b-D-apiofuranosylapterin(1),40-O-isobutyroylpeguangxienin(2),6-(3-methyl-2-oxobutyroyl)-7-methoxycoumarin(3),and 6-hydroxycoumurrayin(4),were isolated from the ...Four hitherto unknown prenylated coumarins,namely 600-O-b-D-apiofuranosylapterin(1),40-O-isobutyroylpeguangxienin(2),6-(3-methyl-2-oxobutyroyl)-7-methoxycoumarin(3),and 6-hydroxycoumurrayin(4),were isolated from the ethanol extract of Heracleum stenopterum,Peucedanum praeruptorum,Clausena lansium,and Murraya paniculata,respectively.Their chemical structures were established on the basis of extensive spectroscopic analysis.Compound 2 exhibited in vitro cytotoxic activity against five human cancer cell lines(HL-60,A-549,SMMC-7721,MCF-7,and SW-480)with IC50 values ranging from 15.9 to 23.2μM.展开更多
Three new minor prenylated flavonoids,named macadenanthins A–C(1–3),together with three known ones(4–6),were isolated from the twigs of Macaranga adenantha.Their structures were elucidated on the basis of extensive...Three new minor prenylated flavonoids,named macadenanthins A–C(1–3),together with three known ones(4–6),were isolated from the twigs of Macaranga adenantha.Their structures were elucidated on the basis of extensive spectroscopic analysis including NMR,UV and MS.The prenyl moieties in compounds 1–3 were further modified by cyclization and hydroxylation.The new compounds were tested for their cytotoxicity against four cancer cell lines(MCF-7,Hep G2,Hela and P388)and showed IC50 values in the range of 13.76–22.27 lM.展开更多
Three flavonoids have been isolated from the leaves of Glycyrrhiza uralensis Fisch(licorice,Leguminosae).The structures have been identified as 5,7,3',4'-tetrahydroxy-3-methoxy-5'-isoprenyl flavone(I,urale...Three flavonoids have been isolated from the leaves of Glycyrrhiza uralensis Fisch(licorice,Leguminosae).The structures have been identified as 5,7,3',4'-tetrahydroxy-3-methoxy-5'-isoprenyl flavone(I,uralenol-3-methylether),5,6,3',4'-tetrahydroxy-3-methoxy-6'-isoprenyl flavone (Ⅱ, unalene) and quercetin(Ⅲ).Ⅰ and Ⅱ are new compound.展开更多
A new prenylated dihydroflavonoid was obtained from the root of Dolichos tenuicaulis (Baker) Craib. The structure was elucidated as (2S)-5,2',6'-trihydroxy-3'″, 8-di (γ,γ-dimethyl-allyl)-2'″, 2'″-dimet...A new prenylated dihydroflavonoid was obtained from the root of Dolichos tenuicaulis (Baker) Craib. The structure was elucidated as (2S)-5,2',6'-trihydroxy-3'″, 8-di (γ,γ-dimethyl-allyl)-2'″, 2'″-dimethylpyrano-[5'″,6'″: 6,7]-2'″″,4'″″-cyclohexadiene-1 '″″-one-[2'″″,3'″″: 3',4']-flavanone, named dolichnin A, by spectroscopic methods including UV, IR, HR-EI-MS, 1D NMR and 2D NMR techniques, and subsequently, the anticancer activity of this compound to inhibit human cancer cells' growth including A549, BEL-7402, Hep-3B, SMMC7721, HT-29, MCF-7, SGC-7902, K562, A498 and PC3 cell lines by MTT method was evaluated in vitro.展开更多
C2 prenylated indoles are widespread in a variety of bioactive natural alkaloids.Therefore,theselective installation of prenyl group at C2 position of NH indoles is of great significance.However,the known protocols ge...C2 prenylated indoles are widespread in a variety of bioactive natural alkaloids.Therefore,theselective installation of prenyl group at C2 position of NH indoles is of great significance.However,the known protocols generally require a multi‐step procedure and stoichiometric promoters.Hereinwe develop a one‐step C2 prenylation of NH indole with cheap tert‐prenyl alcohol enabled by acidcatalysis.Salient features include good regioselectivity,step‐and atom‐economy,broad substratescope,and simple catalytic system.The mechanistic investigations demonstrate that both C2prenylation and C3 prenylation/migration pathways are engaged in the reaction.Notably,this practicalstrategy can be applied to the late‐stage diversification of tryptophan‐based peptides and concisesynthesis of tryprostatin B.展开更多
Protein prenylation plays a crucial role in plant development and stress response.We report the function of pren yltra nsferase a-sub unit in rice.Protein-protei n in teractions showed that the fam esyl-transferase(Os...Protein prenylation plays a crucial role in plant development and stress response.We report the function of pren yltra nsferase a-sub unit in rice.Protein-protei n in teractions showed that the fam esyl-transferase(OsPFT)/geranylgeranyltransferase-l(OsPGGT l-a)protein interacted together with OsPFT-P and OsPGGT l-p.The a-and p-subunits of OsPFT formed a heterodimer for the transfer of a farnesyl group from famesyl pyrophosphate to the CaaX-box-containing peptide N-dansyl-GCVLS.Furthermore,the tissue expressi on patter ns of the OsPFT and OsPGGT I sub units were similar,and these sub units were localized in the cytoplasm and nucleus.Moreover,OsPFT/OsPGGT/-a-deletion homozygous rice mutants had a lethal phenotype,and the heterozygous mutants exhibited reduced pollen viability.These results indicated that prenylation plays an important role in rice development.展开更多
A new prenylated indole alkaloid 11,17-epi-mangrovamide A(1),a new natural occurring product,1,7-dihydroxy-6-methyl-8-hydroxymethyl-xanthone(2),two known alkaloids,mangrovamide A(3)and mangrovamide G(4),and four known...A new prenylated indole alkaloid 11,17-epi-mangrovamide A(1),a new natural occurring product,1,7-dihydroxy-6-methyl-8-hydroxymethyl-xanthone(2),two known alkaloids,mangrovamide A(3)and mangrovamide G(4),and four known polyketide derivatives(5–8)were isolated and identified from the cold-seep sediment derived fungal strain Talaromyces funiculosus SD-523.Their structures were elucidated by combination of nuclear magnetic resonance(NMR),high resolution electrospray ionization mass spectroscopy(HRESIMS),quantum chemical electronic circular dichroism(ECD),and DP4+probability analysis as well as by comparison of the data with literature reports.All isolated compounds were tested for antibacterial activities.展开更多
One new prenylated flavonol, 7,8-(2'',2'' -dimethylpyrano)-5,3',4'-trihydroxy-3-methoxyflavone was isolated from Hypericum japonicum. The chemical structure was determined by spectroscopic meth...One new prenylated flavonol, 7,8-(2'',2'' -dimethylpyrano)-5,3',4'-trihydroxy-3-methoxyflavone was isolated from Hypericum japonicum. The chemical structure was determined by spectroscopic methods.展开更多
C-glycosylation and C-prenylation are two important C-C-bond forming reactions for preparation,diversification and structural modification of natural/unnatural products with pharmacological activities.Here,we describe...C-glycosylation and C-prenylation are two important C-C-bond forming reactions for preparation,diversification and structural modification of natural/unnatural products with pharmacological activities.Here,we described unprecedented enzymatic cascades to C-glycosylate/prenylate different acyl resorcinol derivatives in stepwise,one-pot reactions by combining two promiscuous enzymes,MiCGT,a C-glycosyltransferase,and AtaPT,a prenyltransferase.Five novel bis-C-alkylated products were obtained and structurally identified by MS and NMR spectroscopic data as well as comparison with the literature.This study provided a potential synthetic strategy for synthesizing structurally novel and diverse compounds bearing both C-glycosyl and C-prenyl moieties by a two-step,enzymatic bis-C-alkylation.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
8-Prenylnaringenin(8-PN)is a valuable medical phytoestrogen,which is a precursor to many prenylated flavonoids.How-ever,the availability of 8-PN is limited by inefficient prenyltransferases(PTs)and inadequate substrat...8-Prenylnaringenin(8-PN)is a valuable medical phytoestrogen,which is a precursor to many prenylated flavonoids.How-ever,the availability of 8-PN is limited by inefficient prenyltransferases(PTs)and inadequate substrate precursor levels in microbial chassis.First,six PTs from different sources and their truncated cognates were expressed in a(2S)-naringenin producing strain.Only SfN8DT-1 derived from Sophora flavescens and its truncated cognate,tSfN8DT-1,could synthe-size 8-PN.Second,tSfN8DT-1 was engineered by multiple sequence alignment and a mutant tSfN8DT-1^(Q12E)with greater catalytic activity was obtained.Third,key genes,tHMGR and IDI1,of the mevalonate(MVA)pathway were overexpressed using a copy number combinatorial strategy,which greatly improved 8-PN titer by 368.75%.Fourth,a predicted structure of tSfN8DT-1^(Q12E)was used for molecular docking and virtual saturation mutagenesis.Two key residues,P229 and N305,were identified and saturation mutagenesis on these two sites resulted in an improved mutant N305M.The best-performing mutant,tSfN8DT-1^(Q12EN305M),produced 49.35±0.05 mg/L(5.57±0.01 mg/g DCW)8-PN in a shaking flask.Finally,101.40±2.55 mg/L of 8-PN was obtained in a 5-L bioreactor,which is the greatest titer reported to date for 8-PN.This study combined metabolic engineering and protein engineering methods to enhance precursor supplements and improve the catalytic ability of SfN8DT-1.The production of 8-PN in Saccharomyces cerevisiae was greatly increased through these methods,which may provide a feasible strategy for the biosynthesis of prenylated flavonoids.展开更多
文摘As important natural and pharmaceutical motifs,the catalytic construction of structurally diverse 3,3-disubstituted oxindoles often requires elaborate synthetic efforts on optimizations.Herein,we developed a simple and divergent approach for constructing reverse-prenylated and prenylated oxindoles launched by Ni catalysis with bulk chemical isoprene.Using C3-unsubstituted oxindoles as starting materials,mono reverse-prenylation was demonstrated in high chemo-and regioselectivities facilitated by the combination of Ni(0)and monodentate phosphine ligand.Using the obtained reverse-prenylated oxindoles as versatile synthon,substitutions at the pseudobenzylic position with various electrophiles created vicinal quaternary centers in a concise way.With the help of additives(PPh3 and NaH),air could be directly used as green oxidant to construct prenylated and reverse-prenylatedα-hydroxy-oxindoles divergently from the same substrates.In situ esterification of prenylatedα-hydroxy-oxindoles allowed subsequent Friedel-Crafts substitutions with diverse nucleophiles to deliver prenyl substituted dimeric or spiro-oxindoles.This protocol provides a divergent synthetic approach for the construction of highly functionalized 3,3-disubstituted oxindoles,which have been otherwise difficult to access in a unified approach.
基金supported by the National Natural Science Foundation of China(No.22177016)the Natural Science Foundation of Chongqing(No.cstc2020jcyj-msxmX0537)the Open Project of State Key Laboratory of Natural Medicines(No.SKLNMKF202011).
文摘Five new flavonoid derivatives,cajavolubones A-E(1-5),along with six known analogues(6-11)were isolated from Cajanus volubilis,and their structures were elucidated by spectroscopic analysis and quantum chemical calculations.Cajavolubones A and B(1 and 2)were identified as two geranylated chalcones.Cajavolubone C(3)was a prenylated flavone,while cajavolubones D and E(4 and 5)were two prenylated isoflavanones.Compounds 3,8,9 and 11 displayed cytotoxicity against HCT-116 cancer cell line.
基金National Natural Science Foundation of China(Grant No.81472657 and 81272468)
文摘Prenylated flavonoids are mainly distributed in Leguminosae and Moraceae plants, and they have been reported to possess various biological activities. Previously, we have reported a prenylated isoflavonoid, isoangustone A(IAA) from licorice(Glycyrrhiza uralensis), which induces apoptosis in colorectal cancer cells by disrupting mitochondrial functions. In the present study, we compared a group of flavonoids from licorice with IAA for their anti-proliferation activities and effects on intracellular signaling. The results indicated that the isoprenyl groups on the A and B rings, the hydroxyl groups at the ortho position of isoprenyl on A ring and the conjugated plane of C ring might contribute to the anti-cancer activity of prenylated flavonoids. Based on the above structure-activity relationship, we further identified four prenylated flavonoids with similar anti-cancer activities from licorice. Taken together, our present study established a preliminary structure-activity relationship of anti-cancer prenylated flavonoids, and our data provided important leading compounds from licorice, which deserved further research and development.
基金supported by the National Science and Technology Major Project(No.2017ZX09301072)China Postdoctoral Science Foundation(No.2016M603041).
文摘Six new prenylated flavonoid glycosides,including four new furan-flavonoid glycosides wushepimedoside A–D(1–4)and two new prenyl flavonoid derivatives wushepimedoside E–F(5–6),and one know analog epimedkoreside B(7)were isolated from biotransformation products of the aerial parts of Epimedium wushanense.Their structures were elucidated according to comprehensive analysis of HR-MS and NMR spectroscopic data,and the absolute configurations were assigned using experimental and calculated electronic circular dichroism(ECD)data.The regulatory activity of compounds 1–7 on the production of testosterone in primary rat Leydig cells were investigated,and 4 and 5 exhibited testosterone production-promoting activities.Molecular docking analysis suggested that bioactive compounds 4 and 5 showed the stable binding with 3β-HSD and 4 also had good affinity with Cyp17A1,which suggested that these compounds may regulate testosterone production through stimulating the expression of the above two key proteins.
基金supported by the Great Research Project of National Major New Drug Development(No. 2009ZX09102-110)
文摘2-[3,5-Di-O-β-D-glucosyl-4-(3-methylbut-2-enyl)phenyl]benzofuran-6-ol,a new prenylated arylbenzofuran derivative was isolated from Morus alba L.Its structure was elucidated by various spectroscopic methods including MS,~1H NMR,^(13)C NMR,DEPT,~1H-~1HCOSY,HMQC and HMBC.
文摘In continuation of our chemical investigation on some medicinal plants of the genus Tephrosia, re-investigation of the methylenechloride/methanol (1:1) extract of the air-dried aerial part of Tephrosia apollinea afforded a new prenylated flavonoid 1, in addition to an aromatic ester, a sesquiterpene, a lignan and several known prenylated flavonoids. The structures were established by (^1H NMR, ^13C NMR, DEPT, ^1H-^1H COSY, HMQC, HMBC, NOESY and HRMS). Relative configurations of 9 and 10 were confirmed by X-ray analysis.
基金financially supported by Priority Research Centers Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Education, Science and Technology (No. NRF-2009-0094071), South Korea
文摘An efficient approach has been developed for the synthesis of naturally occurring prenylated chalcones viz. kanzonol C (1), stipulin (2), crotaorixin (3), medicagenin (4), licoagrochalcone A (5) and abyssinone D (6) along with the pyranochalcones paratocarpin C (7), anthyllisone (8) and 3-O-methylabyssinone A (9). The key step of the synthesis is a Claisen-Schmidt condensation. Subsequently, their anti-inflammatory effects were investigated in lipopolysaccharides (LPSs)-induced RAW-264.7 macrophages. Of the synthesized chalcones, compounds 5 (IC50= 10.41 μmol[L), 6 (IC50= 9.65 μmol/L) and 8 (IC50= 15.34 μmol/L) show remarkable activity with no cytotoxicity. Compound 9 (IC50 = 4.5 μmol/L) exhibits maximum (83.6%) nitric oxide (NO) inhibition, but shows slight cytotoxicity. The results reveal that the chalcones bearing the prenyl group at 3- and/or 5-position on ring A (acetophenone moiety), i.e., 1-4 and 7 show weak, or no inhibition activity, whereas chalcones having the prenyl group only on ring B (aldehyde part), i.e., 5, 6 and 8 show significant activity on the production of inflammatory mediated NO with no cytotoxicity.
文摘A new prenylated flavonol, maackiaflavonol, was isolated from the ethanol extract of the roots of Maackia tenuifolia. Its structure was elucidated as 7-hydrox-8-prenylflavonol by means of spectroscopic analysis (UV, IR, MS, NMR and 1H-1H COSY) and confirmed by total synthesis.
文摘Four hitherto unknown prenylated coumarins,namely 600-O-b-D-apiofuranosylapterin(1),40-O-isobutyroylpeguangxienin(2),6-(3-methyl-2-oxobutyroyl)-7-methoxycoumarin(3),and 6-hydroxycoumurrayin(4),were isolated from the ethanol extract of Heracleum stenopterum,Peucedanum praeruptorum,Clausena lansium,and Murraya paniculata,respectively.Their chemical structures were established on the basis of extensive spectroscopic analysis.Compound 2 exhibited in vitro cytotoxic activity against five human cancer cell lines(HL-60,A-549,SMMC-7721,MCF-7,and SW-480)with IC50 values ranging from 15.9 to 23.2μM.
基金National Natural Science Foundation of China(31300293 and 81422046)General Project of Applied Foundation Research,Yunnan Province(2013FB067)+1 种基金Basic Research Project of Ministry of Science and Technology of China(2012FY110300)Major State Basic Research Development Program(2010CB951704).
文摘Three new minor prenylated flavonoids,named macadenanthins A–C(1–3),together with three known ones(4–6),were isolated from the twigs of Macaranga adenantha.Their structures were elucidated on the basis of extensive spectroscopic analysis including NMR,UV and MS.The prenyl moieties in compounds 1–3 were further modified by cyclization and hydroxylation.The new compounds were tested for their cytotoxicity against four cancer cell lines(MCF-7,Hep G2,Hela and P388)and showed IC50 values in the range of 13.76–22.27 lM.
文摘Three flavonoids have been isolated from the leaves of Glycyrrhiza uralensis Fisch(licorice,Leguminosae).The structures have been identified as 5,7,3',4'-tetrahydroxy-3-methoxy-5'-isoprenyl flavone(I,uralenol-3-methylether),5,6,3',4'-tetrahydroxy-3-methoxy-6'-isoprenyl flavone (Ⅱ, unalene) and quercetin(Ⅲ).Ⅰ and Ⅱ are new compound.
文摘A new prenylated dihydroflavonoid was obtained from the root of Dolichos tenuicaulis (Baker) Craib. The structure was elucidated as (2S)-5,2',6'-trihydroxy-3'″, 8-di (γ,γ-dimethyl-allyl)-2'″, 2'″-dimethylpyrano-[5'″,6'″: 6,7]-2'″″,4'″″-cyclohexadiene-1 '″″-one-[2'″″,3'″″: 3',4']-flavanone, named dolichnin A, by spectroscopic methods including UV, IR, HR-EI-MS, 1D NMR and 2D NMR techniques, and subsequently, the anticancer activity of this compound to inhibit human cancer cells' growth including A549, BEL-7402, Hep-3B, SMMC7721, HT-29, MCF-7, SGC-7902, K562, A498 and PC3 cell lines by MTT method was evaluated in vitro.
文摘C2 prenylated indoles are widespread in a variety of bioactive natural alkaloids.Therefore,theselective installation of prenyl group at C2 position of NH indoles is of great significance.However,the known protocols generally require a multi‐step procedure and stoichiometric promoters.Hereinwe develop a one‐step C2 prenylation of NH indole with cheap tert‐prenyl alcohol enabled by acidcatalysis.Salient features include good regioselectivity,step‐and atom‐economy,broad substratescope,and simple catalytic system.The mechanistic investigations demonstrate that both C2prenylation and C3 prenylation/migration pathways are engaged in the reaction.Notably,this practicalstrategy can be applied to the late‐stage diversification of tryptophan‐based peptides and concisesynthesis of tryprostatin B.
基金supported by the Science Technology and Innovation Committee of Shenzhen Municipality of China(Grant Nos.JCYJ20170303154319837 and JCYJ20170412155447658)the Science Technology Innovation and Industrial Development of Dapeng New District,Shenzhen,China(Grant Nos.PT201901-18 and PT201901-20).
文摘Protein prenylation plays a crucial role in plant development and stress response.We report the function of pren yltra nsferase a-sub unit in rice.Protein-protei n in teractions showed that the fam esyl-transferase(OsPFT)/geranylgeranyltransferase-l(OsPGGT l-a)protein interacted together with OsPFT-P and OsPGGT l-p.The a-and p-subunits of OsPFT formed a heterodimer for the transfer of a farnesyl group from famesyl pyrophosphate to the CaaX-box-containing peptide N-dansyl-GCVLS.Furthermore,the tissue expressi on patter ns of the OsPFT and OsPGGT I sub units were similar,and these sub units were localized in the cytoplasm and nucleus.Moreover,OsPFT/OsPGGT/-a-deletion homozygous rice mutants had a lethal phenotype,and the heterozygous mutants exhibited reduced pollen viability.These results indicated that prenylation plays an important role in rice development.
基金Supported by the National Natural Science Foundation of China(No.U2006203)the National Natural Science Foundation of Jiangsu Province(No.BK20201211)the Senior User Project of R/V Kexue(No.KEXUE2020GZ02)。
文摘A new prenylated indole alkaloid 11,17-epi-mangrovamide A(1),a new natural occurring product,1,7-dihydroxy-6-methyl-8-hydroxymethyl-xanthone(2),two known alkaloids,mangrovamide A(3)and mangrovamide G(4),and four known polyketide derivatives(5–8)were isolated and identified from the cold-seep sediment derived fungal strain Talaromyces funiculosus SD-523.Their structures were elucidated by combination of nuclear magnetic resonance(NMR),high resolution electrospray ionization mass spectroscopy(HRESIMS),quantum chemical electronic circular dichroism(ECD),and DP4+probability analysis as well as by comparison of the data with literature reports.All isolated compounds were tested for antibacterial activities.
文摘One new prenylated flavonol, 7,8-(2'',2'' -dimethylpyrano)-5,3',4'-trihydroxy-3-methoxyflavone was isolated from Hypericum japonicum. The chemical structure was determined by spectroscopic methods.
基金National Natural Science Foundation of China(Grant Nos.21572277,81573317 and 81703369)CAMS Innovation Fund for Medical Sciences(CIFMS-2016-I2M-3-012)
文摘C-glycosylation and C-prenylation are two important C-C-bond forming reactions for preparation,diversification and structural modification of natural/unnatural products with pharmacological activities.Here,we described unprecedented enzymatic cascades to C-glycosylate/prenylate different acyl resorcinol derivatives in stepwise,one-pot reactions by combining two promiscuous enzymes,MiCGT,a C-glycosyltransferase,and AtaPT,a prenyltransferase.Five novel bis-C-alkylated products were obtained and structurally identified by MS and NMR spectroscopic data as well as comparison with the literature.This study provided a potential synthetic strategy for synthesizing structurally novel and diverse compounds bearing both C-glycosyl and C-prenyl moieties by a two-step,enzymatic bis-C-alkylation.
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 the National Key Research and Development Program of China(2019YFA0904800)the National Science Fund for Excellent Young Scholars(21822806)the National Natural Science Foundation of China(21908078).
文摘8-Prenylnaringenin(8-PN)is a valuable medical phytoestrogen,which is a precursor to many prenylated flavonoids.How-ever,the availability of 8-PN is limited by inefficient prenyltransferases(PTs)and inadequate substrate precursor levels in microbial chassis.First,six PTs from different sources and their truncated cognates were expressed in a(2S)-naringenin producing strain.Only SfN8DT-1 derived from Sophora flavescens and its truncated cognate,tSfN8DT-1,could synthe-size 8-PN.Second,tSfN8DT-1 was engineered by multiple sequence alignment and a mutant tSfN8DT-1^(Q12E)with greater catalytic activity was obtained.Third,key genes,tHMGR and IDI1,of the mevalonate(MVA)pathway were overexpressed using a copy number combinatorial strategy,which greatly improved 8-PN titer by 368.75%.Fourth,a predicted structure of tSfN8DT-1^(Q12E)was used for molecular docking and virtual saturation mutagenesis.Two key residues,P229 and N305,were identified and saturation mutagenesis on these two sites resulted in an improved mutant N305M.The best-performing mutant,tSfN8DT-1^(Q12EN305M),produced 49.35±0.05 mg/L(5.57±0.01 mg/g DCW)8-PN in a shaking flask.Finally,101.40±2.55 mg/L of 8-PN was obtained in a 5-L bioreactor,which is the greatest titer reported to date for 8-PN.This study combined metabolic engineering and protein engineering methods to enhance precursor supplements and improve the catalytic ability of SfN8DT-1.The production of 8-PN in Saccharomyces cerevisiae was greatly increased through these methods,which may provide a feasible strategy for the biosynthesis of prenylated flavonoids.