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DNA methylation and chromatin structure: The puzzling CpG islands

机译:DNA甲基化和染色质结构:令人费解的CPG岛

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摘要

DNA methylation is the epigenetic modification,which introduces 5mC as fifth base onto DNA. As for the distribution of 5rnCs, it is well known that they distribute themselves in a non-random fashion in genomic DNA so that methylation pattern is characterized by the presence of methylated cytosines on the bulk of DNA while the unmethylated ones are mainly located within particular regions termed CpG islands. These regions represent about 1% of genomic DNA and are generally found in the promoter region Of housekeeping genes. Their unmethylated state, which is an essential condition for the correct expression of correlated genes, is paradoxical if one considers that these regions are termed CpG islands because they are particularly rich in this dinucleotide, which is the best substrate for enzymes involved in DNA methylation. Anomalous insertion of methyl groups in these regions generally leads to the lack of transcription of correlated genes. An interesting scientific problem is to clarify the mechanism(s) whereby CpG islands, which remain protected from methylation in normal cells, are susceptible to methylation in tumour cells. How the CpG moieties in CpG islands become vulnerable or resistant to the action of DNA methyltransferases and can thus lose or maintain their characteristic pattern of methylation is still an open question. Our aim is to gather some mechanisms regarding this intriguing enigma, which, despite all energy spent, still remains all unresolved puzzle. (C) 2004 Wiley-Liss, Inc.
机译:DNA甲基化是表观遗传修饰,其引入作为5MC第五基材上的DNA。至于5rnCs的分布,这是众所周知的,它们散发自己在基因组DNA的非随机的方式,使甲基化模式的特征在于,甲基化的胞嘧啶的在体DNA的存在,而甲基化的那些主要位于内的特定区域称为CpG岛。这些区域表示大约的基因组DNA的1%,并且在启动子区管家基因一般是找到。他们的未甲基化的状态,这是相关的基因的正确表达的必要条件,是自相矛盾如果考虑到这些区域被称为CpG岛,因为它们富含此二核苷酸,其是用于涉及DNA甲基化酶的最佳底物。在这些区域中甲基的异常插入通常导致缺乏相关基因的转录。一个有趣的问题科学是澄清的机构(一个或多个),由此CpG岛,其保持从甲基化在正常细胞的保护,很容易受到在肿瘤细胞中甲基化。在CpG岛的CpG的部分如何变得脆弱或DNA甲基转移酶的作用的,因此可以失去或维持甲基化的其特有的模式仍然是一个悬而未决的问题。我们的目标是收集关于这个有趣的谜,其中,尽管花光了所有的能量,仍然没有解决所有的难题的机制。 (C)2004 WILEY-利斯公司

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