BACKGROUND Hepatocellular carcinoma(HCC)has been a pervasive malignancy throughout the world with elevated mortality.Efficient therapeutic targets are beneficial to treat and predict the disease.Currently,the exact mo...BACKGROUND Hepatocellular carcinoma(HCC)has been a pervasive malignancy throughout the world with elevated mortality.Efficient therapeutic targets are beneficial to treat and predict the disease.Currently,the exact molecular mechanisms leading to the progression of HCC are still unclear.Research has shown that the microRNA-142-3p level decreases in HCC,whereas bioinformatics analysis of the cancer genome atlas database shows the ASH1L expression increased among liver tumor tissues.In this paper,we will explore the effects and mechanisms of microRNA-142-3p and ASH1L affect the prognosis of HCC patients and HCC cell bioactivity,and the association between them.AIM To investigate the effects and mechanisms of microRNA-142-3p and ASH1L on the HCC cell bioactivity and prognosis of HCC patients.METHODS In this study,we grouped HCC patients according to their immunohistochemistry results of ASH1L with pathological tissues,and retrospectively analyzed the prognosis of HCC patients.Furthermore,explored the roles and mechanisms of microRNA-142-3p and ASH1L by cellular and animal experiments,which involved the following experimental methods:Immunohistochemical staining,western blot,quantitative real-time-polymerase chain reaction,flow cytometric analysis,tumor xenografts in nude mice,etc.The statistical methods involved in this study contained t-test,one-way analysis of variance,theχ^(2)test,the Kaplan-Meier approach and the log-rank test.RESULTS In this study,we found that HCC patients with high expression of ASH1L possess a more recurrence rate as well as a decreased overall survival rate.ASH1L promotes the tumorigenicity of HCC and microRNA-142-3p exhibits reduced expression in HCC tissues and interacts with ASH1L through targeting the ASH1L 3′untranslated region.Furthermore,microRNA-142-3p promotes apoptosis and inhibits proliferation,invasion,and migration of HCC cell lines in vitro via ASH1L.For the exploration mechanism,we found ASH1L may promote an immunosuppressive microenvironment in HCC and ASH1L affects the expression of the cell junction protein zonula occludens-1,which is potentially relevant to the immune system.CONCLUSION Loss function of microRNA-142-3p induces cancer progression and immune evasion through upregulation of ASH1L in HCC.Both microRNA-142-3p and ASH1L can feature as new biomarker for HCC in the future.展开更多
AIM To elucidate the underlying mechanism that microRNA-22(miR-22) promotes the apoptosis of rat pancreatic acinar cells(AR42 J) and the elements that regulate the expression of miR-22.METHODS One hundred nanomoles pe...AIM To elucidate the underlying mechanism that microRNA-22(miR-22) promotes the apoptosis of rat pancreatic acinar cells(AR42 J) and the elements that regulate the expression of miR-22.METHODS One hundred nanomoles per liter of caerulein(Cae)was administrated to induce the apoptosis of AR42 J cells and the apoptosis rate was detected by flow cytometry analysis. An amylase assay kit was used to measure the amylase expression level in the supernatant. Quantitative real-time PCR(qRT-PCR)was adopted to measure miR-22 expression. We used online tools to predict the potential transcription promoter of miR-22 and the binding sites, which was further identified by using luciferase reporter analysis,chromatin immunoprecipitation(ChIP) and ChIPqP CR assays. Then, a mimic of miR-22, Nr3 c1 plasmid encoding the glucocorticoid receptor(GR), and siNr3 c1 were used to transfect AR42 J cells, respectively.The mRNA expression of miR-22, Nr3 c1, and Erb-b2 receptor tyrosine kinase 3(ErbB3) was confirmed by qRT-PCR and the apoptosis rate of AR42 J cells was detected by flow cytometry analysis. Western blot was used to detect the expression of ErbB3, GR, PI3 k, PI3 kp85α, Akt, p-Akt, Bad, Bax, Bcl-xl, Bcl-2, and cleaved caspase3.RESULTS After inducing apoptosis of AR42 J cells in vitro, the expression of miR-22 was significantly increased by2.20 ± 0.26 and 4.19 ± 0.54 times, respectively, at3 h and 6 h in comparison with the control group.As revealed by qRT-PCR assay, the expression of miR-22 was 78.25 ± 6.61 times higher in the miR-22 mimic group relative to the miRNA control group,accompanied with an obviously increased acinar cell apoptosis rate(32.53 ± 1.15 vs 18.07 ± 0.89, P =0.0006). The upregulation of miR-22 could suppress its target gene, ErbB3, and the phosphorylation of PI3 k and Akt. Furthermore, we predicted the potential transcription promoter of miR-22 and the binding sites using online tools. Luciferase reporter analysis and sitedirected mutagenesis indicated that the binding site(GACAGCCATGTACA) of the GR, which is encoded by the Nr3 c1 gene. Downregulation of the expression of GR could upregulate the expression of miR-22, which further promoted the apoptosis of AR42 J cells.CONCLUSION GR transcriptionally represses the expression of miR-22,which further promotes the apoptosis of pancreatic acinar cells by downregulating the downstream signaling pathway.展开更多
To investigate the histological,immunohistochemical,and molecular characteristics of sclerosing epithelioid fibrosarcoma(SEF),a rare intracranial lesion,we analyzed the clinical,pathological,and molecular features of ...To investigate the histological,immunohistochemical,and molecular characteristics of sclerosing epithelioid fibrosarcoma(SEF),a rare intracranial lesion,we analyzed the clinical,pathological,and molecular features of a group of cases involving both intracranial(case 1)and extracranial(cases 2,3,and 4)soft tissue tumors.These tumors were located in the bilateral parietal sinuses(one of four cases;25%),thoracic vertebrae(1 of 4 cases;25%),mediastinum(1 of 4 cases;25%),and parathyroid soft tissue(1 of 4 cases;25%).Microscopically,tumor cells were observed in both sparse and dense areas,arranged in sheets,cords,and a fusiform braided pattern,all within a dense sclerotic matrix.All four patients exhibited strong and diffuse positivity for MUC4.Cases 1 and 2 harbored an EWSR1–CREB3L1 fusion;case 3 had a CPSF6–ITPR2 fusion;and case 4 exhibited multiple fusion genes,including FUS–CREB3L2,KDM5A–ERC1,AKAP8L–BRD4,and ATF2–CHN1.Methylation analysis indicated that all cases clustered within the SEF spectrum.Copy number variation analysis revealed deletions in chromosomal arms 11p and 22q across all cases.The morphologies of intracranial and extracranial SEF were found to be similar.Although MUC4 serves as a reliable marker for diagnosing SEF,its molecular findings remain nonspecific.Methylation clustering and aneuploidy score assessment should be considered as additional tools to assist in diagnosis and prognostic monitoring.展开更多
目的通过观察1,25-(OH)2D3对SKOV-3细胞增殖和microRNA-22和microRNA-21表达的影响,探讨microRNAs在1,25-(OH)2D3抗肿瘤增殖中的作用。方法以不同浓度1,25-(OH)2D3(10-9、10-8、10-7mol/L)处理SKOV-3细胞,CCK-8法检测细胞增殖率,real ti...目的通过观察1,25-(OH)2D3对SKOV-3细胞增殖和microRNA-22和microRNA-21表达的影响,探讨microRNAs在1,25-(OH)2D3抗肿瘤增殖中的作用。方法以不同浓度1,25-(OH)2D3(10-9、10-8、10-7mol/L)处理SKOV-3细胞,CCK-8法检测细胞增殖率,real time RT-PCR分析microRNA-22和microRNA-21的表达,流式细胞仪分析细胞周期,TUNEL法检测细胞凋亡。结果 1,25-(OH)2D3对SKOV-3细胞增殖有明显的抑制作用,并且存在着时间剂量依赖关系(P<0.01)。1,25-(OH)2D3可以降低microRNA-22的表达水平(P<0.05),但是不影响microRNA-21的表达。细胞周期分析显示,1,25-(OH)2D3可以诱导SKOV-3细胞阻滞于G0/G1,浓度越高阻滞越明显(P<0.05)。1,25-(OH)2D3促进SKOV-3细胞核内DNA断裂点增加,细胞凋亡增加(P<0.05)。结论在SKOV-3细胞中,1,25-(OH)2D3可能是通过抑制microRNA-22,促进细胞凋亡,调节细胞周期,抑制细胞增殖,从而到达抑制肿瘤的作用。[营养学报,2014,36(1):35-39]展开更多
基金Supported by the Haihe Laboratory of Cell Ecosystem Innovation Fund,No.22HHXBJC00001the Key Discipline Special Project of Tianjin Municipal Health Commission,No.TJWJ2022XK016.
文摘BACKGROUND Hepatocellular carcinoma(HCC)has been a pervasive malignancy throughout the world with elevated mortality.Efficient therapeutic targets are beneficial to treat and predict the disease.Currently,the exact molecular mechanisms leading to the progression of HCC are still unclear.Research has shown that the microRNA-142-3p level decreases in HCC,whereas bioinformatics analysis of the cancer genome atlas database shows the ASH1L expression increased among liver tumor tissues.In this paper,we will explore the effects and mechanisms of microRNA-142-3p and ASH1L affect the prognosis of HCC patients and HCC cell bioactivity,and the association between them.AIM To investigate the effects and mechanisms of microRNA-142-3p and ASH1L on the HCC cell bioactivity and prognosis of HCC patients.METHODS In this study,we grouped HCC patients according to their immunohistochemistry results of ASH1L with pathological tissues,and retrospectively analyzed the prognosis of HCC patients.Furthermore,explored the roles and mechanisms of microRNA-142-3p and ASH1L by cellular and animal experiments,which involved the following experimental methods:Immunohistochemical staining,western blot,quantitative real-time-polymerase chain reaction,flow cytometric analysis,tumor xenografts in nude mice,etc.The statistical methods involved in this study contained t-test,one-way analysis of variance,theχ^(2)test,the Kaplan-Meier approach and the log-rank test.RESULTS In this study,we found that HCC patients with high expression of ASH1L possess a more recurrence rate as well as a decreased overall survival rate.ASH1L promotes the tumorigenicity of HCC and microRNA-142-3p exhibits reduced expression in HCC tissues and interacts with ASH1L through targeting the ASH1L 3′untranslated region.Furthermore,microRNA-142-3p promotes apoptosis and inhibits proliferation,invasion,and migration of HCC cell lines in vitro via ASH1L.For the exploration mechanism,we found ASH1L may promote an immunosuppressive microenvironment in HCC and ASH1L affects the expression of the cell junction protein zonula occludens-1,which is potentially relevant to the immune system.CONCLUSION Loss function of microRNA-142-3p induces cancer progression and immune evasion through upregulation of ASH1L in HCC.Both microRNA-142-3p and ASH1L can feature as new biomarker for HCC in the future.
基金National Natural Science Foundation of China,No.31671440
文摘AIM To elucidate the underlying mechanism that microRNA-22(miR-22) promotes the apoptosis of rat pancreatic acinar cells(AR42 J) and the elements that regulate the expression of miR-22.METHODS One hundred nanomoles per liter of caerulein(Cae)was administrated to induce the apoptosis of AR42 J cells and the apoptosis rate was detected by flow cytometry analysis. An amylase assay kit was used to measure the amylase expression level in the supernatant. Quantitative real-time PCR(qRT-PCR)was adopted to measure miR-22 expression. We used online tools to predict the potential transcription promoter of miR-22 and the binding sites, which was further identified by using luciferase reporter analysis,chromatin immunoprecipitation(ChIP) and ChIPqP CR assays. Then, a mimic of miR-22, Nr3 c1 plasmid encoding the glucocorticoid receptor(GR), and siNr3 c1 were used to transfect AR42 J cells, respectively.The mRNA expression of miR-22, Nr3 c1, and Erb-b2 receptor tyrosine kinase 3(ErbB3) was confirmed by qRT-PCR and the apoptosis rate of AR42 J cells was detected by flow cytometry analysis. Western blot was used to detect the expression of ErbB3, GR, PI3 k, PI3 kp85α, Akt, p-Akt, Bad, Bax, Bcl-xl, Bcl-2, and cleaved caspase3.RESULTS After inducing apoptosis of AR42 J cells in vitro, the expression of miR-22 was significantly increased by2.20 ± 0.26 and 4.19 ± 0.54 times, respectively, at3 h and 6 h in comparison with the control group.As revealed by qRT-PCR assay, the expression of miR-22 was 78.25 ± 6.61 times higher in the miR-22 mimic group relative to the miRNA control group,accompanied with an obviously increased acinar cell apoptosis rate(32.53 ± 1.15 vs 18.07 ± 0.89, P =0.0006). The upregulation of miR-22 could suppress its target gene, ErbB3, and the phosphorylation of PI3 k and Akt. Furthermore, we predicted the potential transcription promoter of miR-22 and the binding sites using online tools. Luciferase reporter analysis and sitedirected mutagenesis indicated that the binding site(GACAGCCATGTACA) of the GR, which is encoded by the Nr3 c1 gene. Downregulation of the expression of GR could upregulate the expression of miR-22, which further promoted the apoptosis of AR42 J cells.CONCLUSION GR transcriptionally represses the expression of miR-22,which further promotes the apoptosis of pancreatic acinar cells by downregulating the downstream signaling pathway.
基金supported by grants from the National Natural Science Foundation of China(No.82273082)Chongqing Technical Innovation and Application Development Key Project(No.cstc2021jscx-cylhX0005)。
文摘To investigate the histological,immunohistochemical,and molecular characteristics of sclerosing epithelioid fibrosarcoma(SEF),a rare intracranial lesion,we analyzed the clinical,pathological,and molecular features of a group of cases involving both intracranial(case 1)and extracranial(cases 2,3,and 4)soft tissue tumors.These tumors were located in the bilateral parietal sinuses(one of four cases;25%),thoracic vertebrae(1 of 4 cases;25%),mediastinum(1 of 4 cases;25%),and parathyroid soft tissue(1 of 4 cases;25%).Microscopically,tumor cells were observed in both sparse and dense areas,arranged in sheets,cords,and a fusiform braided pattern,all within a dense sclerotic matrix.All four patients exhibited strong and diffuse positivity for MUC4.Cases 1 and 2 harbored an EWSR1–CREB3L1 fusion;case 3 had a CPSF6–ITPR2 fusion;and case 4 exhibited multiple fusion genes,including FUS–CREB3L2,KDM5A–ERC1,AKAP8L–BRD4,and ATF2–CHN1.Methylation analysis indicated that all cases clustered within the SEF spectrum.Copy number variation analysis revealed deletions in chromosomal arms 11p and 22q across all cases.The morphologies of intracranial and extracranial SEF were found to be similar.Although MUC4 serves as a reliable marker for diagnosing SEF,its molecular findings remain nonspecific.Methylation clustering and aneuploidy score assessment should be considered as additional tools to assist in diagnosis and prognostic monitoring.
文摘目的通过观察1,25-(OH)2D3对SKOV-3细胞增殖和microRNA-22和microRNA-21表达的影响,探讨microRNAs在1,25-(OH)2D3抗肿瘤增殖中的作用。方法以不同浓度1,25-(OH)2D3(10-9、10-8、10-7mol/L)处理SKOV-3细胞,CCK-8法检测细胞增殖率,real time RT-PCR分析microRNA-22和microRNA-21的表达,流式细胞仪分析细胞周期,TUNEL法检测细胞凋亡。结果 1,25-(OH)2D3对SKOV-3细胞增殖有明显的抑制作用,并且存在着时间剂量依赖关系(P<0.01)。1,25-(OH)2D3可以降低microRNA-22的表达水平(P<0.05),但是不影响microRNA-21的表达。细胞周期分析显示,1,25-(OH)2D3可以诱导SKOV-3细胞阻滞于G0/G1,浓度越高阻滞越明显(P<0.05)。1,25-(OH)2D3促进SKOV-3细胞核内DNA断裂点增加,细胞凋亡增加(P<0.05)。结论在SKOV-3细胞中,1,25-(OH)2D3可能是通过抑制microRNA-22,促进细胞凋亡,调节细胞周期,抑制细胞增殖,从而到达抑制肿瘤的作用。[营养学报,2014,36(1):35-39]