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跨代表观遗传学:将体细胞与生殖细胞的通讯与配子遗传整合起来。

Transgenerational epigenetics: Integrating soma to germline communication with gametic inheritance.

作者信息

Sharma Abhay

机构信息

CSIR-Institute of Genomics and Integrative Biology, Council of Scientific and Industrial Research, Sukhdev Vihar, Mathura Road, New Delhi, 110025, India.

出版信息

Mech Ageing Dev. 2017 Apr;163:15-22. doi: 10.1016/j.mad.2016.12.015. Epub 2017 Jan 16.

Abstract

Evidence supporting germline mediated epigenetic inheritance of environmentally induced traits has increasingly emerged over the past several years. Although the mechanisms underlying this inheritance remain unclear, recent findings suggest that parental gamete-borne epigenetic factors, particularly RNAs, affect post-fertilization and developmental gene regulation, ultimately leading to phenotypic appearance in the offspring. Complex processes involving gene expression and epigenetic regulation are considered to perpetuate across generations. In addition to transfer of germline factors, epigenetic inheritance via gametes also requires a mechanism whereby the information pertaining to the induced traits is communicated from soma to germline. Despite violating a century-old view in biology, this communication seems to play a role in transmission of environmental effects across generations. Circulating RNAs, especially those associated with extracellular vesicles like exosomes, are emerging as promising candidates that can transmit gene regulatory information in this direction. Cumulatively, these new observations provide a basis to integrate epigenetic inheritance. With significant implications in health, disease and ageing, the latter appears poised to revolutionize biology.

摘要

在过去几年里,支持环境诱导性状的种系介导表观遗传遗传的证据越来越多。尽管这种遗传背后的机制尚不清楚,但最近的研究结果表明,亲代配子携带的表观遗传因子,尤其是RNA,会影响受精后和发育过程中的基因调控,最终导致后代出现表型。涉及基因表达和表观遗传调控的复杂过程被认为会代代相传。除了种系因子的传递外,通过配子的表观遗传遗传还需要一种机制,通过这种机制,与诱导性状相关的信息从体细胞传递到种系。尽管这与生物学中一个世纪以来的观点相悖,但这种传递似乎在环境效应的代际传递中发挥了作用。循环RNA,尤其是那些与细胞外囊泡(如外泌体)相关的RNA,正成为有希望的候选者,它们可以在这个方向上传递基因调控信息。总的来说,这些新发现为整合表观遗传遗传提供了基础。鉴于其对健康、疾病和衰老具有重大影响,表观遗传遗传似乎即将彻底改变生物学。

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