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Aberrant methylation frequency of TNFRSF10C promoter in pancreatic cancer cell lines 被引量:4

Aberrant methylation frequency of TNFRSF10C promoter in pancreatic cancer cell lines
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摘要 BACKGROUND:A growing body of evidence suggests that many tumors are initiated by both epigenetic abnormalities and gene mutations,which promote tumor progression. Epigenetic abnormalities include changes in DNA methylation and in the modification of histones.This study aimed to assess the status of methylation in the CpG island(CGI)of the tumor necrosis factor receptor superfamily member 10c(TNFRSF10C) with combined bisulfite restriction analysis(COBRA)and to evaluate its role in the progression of pancreatic cancer(PC). METHODS:The methylation status of four PC cell lines was assessed using COBRA and/or bisulfite genomic sequencing (BGS).Changes in methylation and TNFRSF10C expression in PC cell lines before and after treatment with 5-aza-2’-deoxycytidine(5-aza-dC)and/or trichostatin A(TSA)were assessed by BGS and real-time RT-PCR.Apoptosis in the four cell lines was tested by flow cytometry(FCM)and TUNEL assay. RESULTS:The methylation status of the TNFRSF10C promoter was assessed in PC cells(BxPC-3:68.84±8.71%;CFPAC-1:0; PANC-1:96.77±4.57%;SW1990:54.97±7.33%)with the COBRA assay,which was confirmed by the results of BGS.After treatment with 5-aza-dC and/or TSA,apoptosis was induced in PC cells to different degrees,and the levels of TNFRSF10C transcriptional expression in the PC cell lines(except CFPAC-1) increased markedly after 5-aza-dC treatment. CONCLUSIONS:A high frequency of CGI methylation in the TNFRSF10C promoter results in inactivation of the gene and enhancement of tumor growth in most PC cell lines(except CFPAC-1).Inactivation of TNFRSF10C by CGI hypermethylation can play an important role in PC progression and be potentially useful as a diagnostic marker and a new therapeutic approach for PC. BACKGROUND:A growing body of evidence suggests that many tumors are initiated by both epigenetic abnormalities and gene mutations,which promote tumor progression. Epigenetic abnormalities include changes in DNA methylation and in the modification of histones.This study aimed to assess the status of methylation in the CpG island(CGI)of the tumor necrosis factor receptor superfamily member 10c(TNFRSF10C) with combined bisulfite restriction analysis(COBRA)and to evaluate its role in the progression of pancreatic cancer(PC). METHODS:The methylation status of four PC cell lines was assessed using COBRA and/or bisulfite genomic sequencing (BGS).Changes in methylation and TNFRSF10C expression in PC cell lines before and after treatment with 5-aza-2'-deoxycytidine(5-aza-dC)and/or trichostatin A(TSA)were assessed by BGS and real-time RT-PCR.Apoptosis in the four cell lines was tested by flow cytometry(FCM)and TUNEL assay. RESULTS:The methylation status of the TNFRSF10C promoter was assessed in PC cells(BxPC-3:68.84±8.71%;CFPAC-1:0; PANC-1:96.77±4.57%;SW1990:54.97±7.33%)with the COBRA assay,which was confirmed by the results of BGS.After treatment with 5-aza-dC and/or TSA,apoptosis was induced in PC cells to different degrees,and the levels of TNFRSF10C transcriptional expression in the PC cell lines(except CFPAC-1) increased markedly after 5-aza-dC treatment. CONCLUSIONS:A high frequency of CGI methylation in the TNFRSF10C promoter results in inactivation of the gene and enhancement of tumor growth in most PC cell lines(except CFPAC-1).Inactivation of TNFRSF10C by CGI hypermethylation can play an important role in PC progression and be potentially useful as a diagnostic marker and a new therapeutic approach for PC.
出处 《Hepatobiliary & Pancreatic Diseases International》 SCIE CAS 2011年第1期95-100,共6页 国际肝胆胰疾病杂志(英文版)
基金 supported by a grant from the National Natural Science Foundation of China(30471691)
关键词 METHYLATION CpG island pancreatic cancer TNFRSF10C methylation CpG island pancreatic cancer TNFRSF10C
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  • 1Cheng-Yi Sun,Bai-Lin Wang,Chao-Quan Hu,Rui-Yun Peng,Ya-Bing Gao,Qing-Yang Gu,De-Wen Wang From the Department of Surgery, Guiyang Medical College, Guiyang 550004, China Beijing Institute of Radiation Medicine, Beijing 100850, China.Expression of the bcl-2 gene and its significance in human pancreatic carcinoma[J].Hepatobiliary & Pancreatic Diseases International,2002,1(2):306-308. 被引量:4
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