Department of Biology, The University of Alabama at Birmingham, Birmingham, AL, USA.
Mamm Genome. 2020 Jun;31(5-6):181-195. doi: 10.1007/s00335-020-09836-2. Epub 2020 Apr 15.
Maintaining genome stability is essential to an organism's health and survival. Breakdown of the mechanisms protecting the genome and the resulting genome instability are an important aspect of the aging process and have been linked to diseases such as cancer. Thus, a large network of interconnected pathways is responsible for ensuring genome integrity in the face of the continuous challenges that induce DNA damage. While these pathways are diverse, epigenetic mechanisms play a central role in many of them. DNA modifications, histone variants and modifications, chromatin structure, and non-coding RNAs all carry out a variety of functions to ensure that genome stability is maintained. Epigenetic mechanisms ensure the functions of centromeres and telomeres that are essential for genome stability. Epigenetic mechanisms also protect the genome from the invasion by transposable elements and contribute to various DNA repair pathways. In this review, we highlight the integral role of epigenetic mechanisms in the maintenance of genome stability and draw attention to issues in need of further study.
维持基因组稳定性对于生物体的健康和生存至关重要。保护基因组的机制的崩溃以及由此导致的基因组不稳定性是衰老过程的一个重要方面,并与癌症等疾病有关。因此,在面对不断诱导 DNA 损伤的挑战时,一个相互关联的大型途径网络负责确保基因组的完整性。虽然这些途径多种多样,但表观遗传机制在其中许多途径中起着核心作用。DNA 修饰、组蛋白变体和修饰、染色质结构和非编码 RNA 都执行各种功能,以确保基因组稳定性得以维持。表观遗传机制确保了对基因组稳定性至关重要的着丝粒和端粒的功能。表观遗传机制还可以防止基因组受到转座元件的侵袭,并有助于各种 DNA 修复途径。在这篇综述中,我们强调了表观遗传机制在维持基因组稳定性中的整体作用,并提请注意需要进一步研究的问题。