将衰老与癌症联系起来:染色质生物学的作用

Laura Corveleyn, Payel Sen, Peter Adams, Simone Sidoli
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引用次数: 0

摘要

表观遗传变化已被确定为衰老的标志,这意味着衰老科学需要与染色质生物学领域合作。DNA 甲基化模式、组蛋白翻译后修饰(PTM)相对丰度的变化以及染色质重塑是改变染色质结构的核心因素。衰老通常与染色质不稳定性的整体增加、失去平衡和解聚有关。然而,许多出版物强调,衰老与染色质变化之间的联系并不像以前预期的那样是线性的。在生物体的一生中,这些表观遗传学元素之间复杂的相互作用可能会导致细胞衰老、基因组不稳定和疾病易感性。然而,这些现象之间的因果联系仍有待全面揭示。在这篇透视文章中,我们将讨论衰老染色质生物学未来的潜在发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linking Aging to Cancer: The Role of Chromatin Biology
Epigenetic changes have been established to be a hallmark of aging, which implies that aging science requires collaborating with the field of chromatin biology. DNA methylation patterns, changes in relative abundance of histone post-translational modifications (PTMs), and chromatin remodeling are the central players in modifying chromatin structure. Aging is commonly associated with an overall increase in chromatin instability, loss of homeostasis and decondensation. However, numerous publications have highlighted that the link between aging and chromatin changes is not nearly as linear as previously expected. This complex interplay of these epigenetics elements during the lifetime of an organism likely contribute to cellular senescence, genomic instability, and disease susceptibility. Yet, the causal links between these phenomena still need to be fully unraveled. In this perspective article, we discuss potential future directions of aging chromatin biology.
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