表观基因组编程:一种未来的健康方式?

Microbial Ecology in Health and Disease Pub Date : 2014-05-08 eCollection Date: 2014-01-01 DOI:10.3402/mehd.v25.24145
Boris A Shenderov, Tore Midtvedt
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引用次数: 64

摘要

现在人们普遍认为,“中央基因组法则”(即从DNA到RNA到蛋白质,再到下游的生物功能的因果链)应该被“流体基因组法则”所取代,即复杂的前馈和反馈循环,通过表观基因组编程和重编程,在整个生命周期和所有层面,有时也在世代之间,将生物体和环境联系起来。表观基因组编程是自身代谢和微生物群以及饮食、药物、环境化合物等外部因素相互作用的总和。越来越多的结果表明,许多慢性代谢和退行性紊乱和疾病——通常被称为“文明疾病”——是由非最佳表观基因组编程引发和/或影响的,通常发生在生命早期。在这种情况下,生命的最初1000天——从受孕到婴儿早期——通常被称为生命中最重要的时期。下面几节介绍了表观基因组编程的一些主要机制以及一些被认为是重要的因素。对自身基因组和元基因组信息的需求,以及对饮食和环境数据库信息的严重缺乏也进行了评论。然而,我们能够影响表观基因组健康规划这一事实为预防和治疗干预开辟了道路。作者强调了创建“人类肠道微生物群和表观基因组平台”的重要性,以促进从事宿主微生物生态学,营养学,宏基因组学,表观基因组学和代谢组学以及疾病流行病学,预防和治疗的科学家和临床医生之间的跨学科合作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenomic programing: a future way to health?

It is now generally accepted that the 'central genome dogma' (i.e. a causal chain going from DNA to RNA to proteins and downstream to biological functions) should be replaced by the 'fluid genome dogma', that is, complex feed-forward and feed-back cycles that interconnect organism and environment by epigenomic programing - and reprograming - throughout life and at all levels, sometimes also down the generations. The epigenomic programing is the net sum of interactions derived from own metabolism and microbiota as well as external factors such as diet, pharmaceuticals, environmental compounds, and so on. It is a growing body of results indicating that many chronic metabolic and degenerative disorders and diseases - often called 'civilization diseases' - are initiated and/or influenced upon by non-optimal epigenomic programing, often taking place early in life. In this context, the first 1,000 days of life - from conception into early infancy - is often called the most important period of life. The following sections present some major mechanisms for epigenomic programing as well as some factors assumed to be of importance. The need for more information about own genome and metagenome, as well as a substantial lack of adequate information regarding dietary and environmental databases are also commented upon. However, the mere fact that we can influence epigenomic health programing opens up the way for prophylactic and therapeutic interventions. The authors underline the importance of creating a 'Human Gut Microbiota and Epigenomic Platform' in order to facilitate interdisciplinary collaborations among scientists and clinicians engaged in host microbial ecology, nutrition, metagenomics, epigenomics and metabolomics as well as in disease epidemiology, prevention and treatment.

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