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Suppressing Effects of Down-regulating DNMT1 and DNMT3b Expression on the Growth of Human Cholangiocarcinoma Cell Line 被引量:5

Suppressing Effects of Down-regulating DNMT1 and DNMT3b Expression on the Growth of Human Cholangiocarcinoma Cell Line
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摘要 Hypermethylation in the promoter region is an important epigenetic mechanism for the transcriptional repression of a number of cancer-associated genes, and over-expression and/or increased activity of DNA methyltransferases are considered to be the main cause of promoter hypermethylation. In order to explore the roles of two methyltransferase members (DNMT1 and DNMT3b) in the cholangiocarcinoma tumorigenesis, antisense eukaryotic expression plasmid of DNMT1 and DNMT3b gene was constructed respectively, and were co-transfected into the human cholangiocarcinoma cell line QBC-939 to observe their biological effects on the cell growth and proliferation ability, apoptosis, cell cycle alteration, and the tumorigenesis ability in the subcutaneous tissue of nude mouse. The results demonstrated that co-transfection with antisense eukaryotic expression plasmid of DNMT1 and DNMT3b gene and single transfection with antisense eukaryotic expression plasmid of DNMT1 gene can suppress the growth and proliferation of QBC-939, block the cell cycle at G1 phase, increase the apoptosis rate, minimize the tumor size in the subcutaneous tissue of nude mouse. The suppressing biological effect of co-transfection is stronger than single transfection with antisense DNMT1. Meanwhile, single transfection with antisense eukaryotic expression plasmid of DNMT3b gene has no effects on the biological characteristics of QBC-939. This study suggests that DNMT1 gene plays a key role in DNA methylation and DNMT3b gene may act as an accessory to support its function in inactivation of tumor suppressor genes. Combination DNMT1 and DNMT3b will increase their biological effects and have the synergistic effect on suppressing the growth of human cholangiocarcinoma cell line QBC-939. Hypermethylation in the promoter region is an important epigenetic mechanism for the transcriptional repression of a number of cancer-associated genes, and over-expression and/or increased activity of DNA methyltransferases are considered to be the main cause of promoter hypermethylation. In order to explore the roles of two methyltransferase members (DNMT1 and DNMT3b) in the cholangiocarcinoma tumorigenesis, antisense eukaryotic expression plasmid of DNMT1 and DNMT3b gene was constructed respectively, and were co-transfected into the human cholangiocarcinoma cell line QBC-939 to observe their biological effects on the cell growth and proliferation ability, apoptosis, cell cycle alteration, and the tumorigenesis ability in the subcutaneous tissue of nude mouse. The results demonstrated that co-transfection with antisense eukaryotic expression plasmid of DNMT1 and DNMT3b gene and single transfection with antisense eukaryotic expression plasmid of DNMT1 gene can suppress the growth and proliferation of QBC-939, block the cell cycle at G1 phase, increase the apoptosis rate, minimize the tumor size in the subcutaneous tissue of nude mouse. The suppressing biological effect of co-transfection is stronger than single transfection with antisense DNMT1. Meanwhile, single transfection with antisense eukaryotic expression plasmid of DNMT3b gene has no effects on the biological characteristics of QBC-939. This study suggests that DNMT1 gene plays a key role in DNA methylation and DNMT3b gene may act as an accessory to support its function in inactivation of tumor suppressor genes. Combination DNMT1 and DNMT3b will increase their biological effects and have the synergistic effect on suppressing the growth of human cholangiocarcinoma cell line QBC-939.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2008年第3期276-280,共5页 华中科技大学学报(医学英德文版)
基金 a grant from Hi-Tech Research and Development Program of China (863 Program) (No.2002AA214061)
关键词 DNA methyltransferase 1 DNA methyltransferase 36 cholangiocarcinma ANTISENSE apoptosis DNA methyltransferase 1 DNA methyltransferase 36 cholangiocarcinma antisense apoptosis
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  • 1Bestor T, Laudano A, Mattaliano R, et al. Cloning and sequencing of a cDNA encoding DNA methyltransferase of mouse cells. The carboxyl-terminal domain of the mammalian enzymes is related to bacterial restriction methyltransferases. J Mol Biol, 1988,203: 9
  • 2Fang JY, Xiao SD. Alteration of DNA methylation in gastrointestinal carcinogenesis. J Gastroenterol Hepatol, 2001,16: 960-968.
  • 3MikovitsJ, Young H, Vertino P, et al. Infection with human immunodeficiency virus type 1 upregulates DNA methyltransferase, resulting in de novo methylation of the gamma interferon (IFN-gamma) promoter and subsequent downregulation of IFN-gamma production
  • 4Vertino PM, Yen RW, Gao J, et al. De novo methylation of CpG island sequences in human fibroblasts overexpressing DNA (cytosine5)-methyltransferase. Mol Cell Biol, 1996,16: 4555-4565.
  • 5Scanlan MJ, Welt S, Gordon CM, et al. Cancer-related serological recognition of human colon cancer: identification of potential diagnostic and immunotherapeutic targets. Cancer Res,2002,62:40414047.
  • 6Wang YC, Lu YP, Tseng RC, et al. Inactivation of hMLH1 and hMSH2 by promoter methylation in primary non-small cell lung tu mors and matched sputum samples. J Clin Invest,2003, 111:887-895.
  • 7RoccoJW, Sidransky D. P16(MTS-1/CDKN2/INK4a) in cancer progression. Exp Cell Res, 2001,264: 42-55.
  • 8Fang J, Zhu S, Xiao S, et al. Alterations of level of total genomic DNA methylation and pattern of c-myc, c-Ha-ras oncogene methylation in human gastric carcinogenesis. Chin Med J (Engl) ,1996,109:787-791.
  • 9Karpf A R,Jones D A.Reactivating the expression of methylation silenced genes in human cancer[].Oncegene.2002
  • 10Tannapfel A,Sommerer F,Benicke M et al.Genetic and epigenetic alterations of the INK4a-ARF pathway in cholangiocarcinoma[].Journal of Paleopathology.2002

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