DNA methylation and hepatocellular carcinoma.

Jingde Zhu
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引用次数: 43

Abstract

The epigenetic makeup of organisms forms a link between the genetic information (DNA sequence) and the gene expression (and therefore phenotype). It dictates the memory for the gene expression pattern that, in turn, specifies cell identity. DNA methylation is the most studied epigenetic mechanism, aberration of which prevails in cancer, resulting in an altered pattern of gene expression and, therefore, cancerous features, including genetic abnormalities: mutations and genome instability. Altered methylation in cancer occurs in two directions. A marked reduction in the overall level of DNA methylation has been linked to the activation of transcription/transposition and the overexpression of protooncogenes. In parallel, there is a common occurrence of a hypermethylated status of the promoter cytosine (CpG) island in genes involved in the negative control of cell growth and in the maintenance of genomic stability; therefore causing transcription silencing. It is thus necessary and important to establish a comprehensive profile of DNA methylation changes in the promoter CpG island in many genes, both for better understanding of the underlying mechanisms and for diagnostic purposes in cancer clinics. Hepatocellular carcinoma is one of the most threatening malignancies in East Asia and Africa. In this short review, I briefly outline our current understanding of DNA methylation in cancer in general, emphasizing its recent progress in hepatocellular carcinoma.

DNA甲基化与肝细胞癌。
有机体的表观遗传构成在遗传信息(DNA序列)和基因表达(因此是表型)之间形成了联系。它决定了基因表达模式的记忆,进而决定了细胞的身份。DNA甲基化是研究最多的表观遗传机制,其畸变在癌症中普遍存在,导致基因表达模式改变,从而导致癌症特征,包括遗传异常:突变和基因组不稳定。癌症中甲基化的改变有两个方向。DNA甲基化总体水平的显著降低与转录/转位的激活和原癌基因的过度表达有关。与此同时,在参与细胞生长负控制和维持基因组稳定性的基因中,启动子胞嘧啶(CpG)岛的高甲基化状态也很常见;因此导致转录沉默。因此,建立许多基因启动子CpG岛DNA甲基化变化的全面概况是必要和重要的,这既可以更好地理解潜在的机制,也可以用于癌症临床诊断目的。肝细胞癌是东亚和非洲最具威胁性的恶性肿瘤之一。在这篇简短的综述中,我简要概述了我们目前对癌症中DNA甲基化的理解,并强调了其在肝细胞癌中的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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