[表观遗传突变作为与年龄相关的蛋白质功能障碍和衰老的程序]。

Ontogenez Pub Date : 2015-03-01
G A Romanov, V S Sukhoverov, B F Vanyushin
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引用次数: 0

摘要

DNA甲基化在人类和哺乳动物的个体发生中起着重要的多功能作用。基因组中CpG二核苷酸突变取代TpG二核苷酸的可能性急剧上升是DNA甲基化的后果之一。对DNA中cpg -二核苷酸甲基化引起的所有可能的DNA和蛋白质突变谱(17)进行了表征,并分离出了三种最危险的突变(可导致蛋白质失活)。计算机程序允许人们预测分析的基因和编码蛋白质中所有最可能的突变。以人类和各种哺乳动物的基因为例,结果表明,由于基因组的进化,外显子中潜在危险的表观遗传突变位点的数量急剧减少。但是,与此同时,这些位点的非强制保存及其持久性被建立起来,表明基因组表观遗传程序中存在与年龄相关的蛋白质功能障碍,导致细胞凋亡和衰老;这个程序是基于甲基化密码子在外显子基因区域的设置和位置。据推测,表观遗传突变程序限制了个体的寿命,加速了从完成生殖期的长寿个体中解放出来的种群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Epigenetic mutagenesis as program of age-related protein dysfunction and aging].

DNA methylation plays an important polyfunctional role in ontogenesis of human and mammals. A steep rise in probability of mutational substitution of CpG dinucleotide on TpG dinucleotide in the genome is one of the consequences of DNA methylation. All spectrum (17) of possible DNA and protein mutations caused by CpG-dinucleotide methylation in DNA were characterized, and the three most dangerous mutations (able to result in protein inactivation) were isolated. The computer program that allows one to predict all most probable mutations in the analyzed gene and encoded protein was created. On the example of genes from humans and various mammals, it was demonstrated that the amount of potentially dangerous sites of epigenetic mutagenesis in exons was drastically decreased as a result of genome evolution. But, at the same time, unforced preservation of such sites and their persistence were established, indicating the occurrence of age-related protein dysfunction built into the genome epigenetic program, resulting in apoptosis and aging; this program is based on the set and position of methylated codons in exonic gene regions. It is assumed that the program of epigenetic mutagenesis limits the lifetime of an individual, accelerating the deliverance of the population from long-lived individuals that completed the reproductive period.

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