Emerson Felicity J, Lee Siu Sylvia
Lee Lab, Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, United States.
Front Mol Biosci. 2023 Oct 9;10:1270285. doi: 10.3389/fmolb.2023.1270285. eCollection 2023.
Aging affects nearly all aspects of our cells, from our DNA to our proteins to how our cells handle stress and communicate with each other. Age-related chromatin changes are of particular interest because chromatin can dynamically respond to the cellular and organismal environment, and many modifications at chromatin are reversible. Changes at chromatin occur during aging, and evidence from model organisms suggests that chromatin factors could play a role in modulating the aging process itself, as altering proteins that work at chromatin often affect the lifespan of yeast, worms, flies, and mice. The field of chromatin and aging is rapidly expanding, and high-resolution genomics tools make it possible to survey the chromatin environment or track chromatin factors implicated in longevity with precision that was not previously possible. In this review, we discuss the state of chromatin and aging research. We include examples from yeast, , mice, and humans, but we particularly focus on the commonly used aging model, the worm , in which there are many examples of chromatin factors that modulate longevity. We include evidence of both age-related changes to chromatin and evidence of specific chromatin factors linked to longevity in core histones, nuclear architecture, chromatin remodeling, and histone modifications.
衰老几乎影响我们细胞的所有方面,从我们的DNA到蛋白质,再到我们的细胞如何应对压力以及相互交流。与年龄相关的染色质变化尤其令人关注,因为染色质能够动态响应细胞和机体环境,并且染色质上的许多修饰是可逆的。染色质变化在衰老过程中发生,来自模式生物的证据表明,染色质因子可能在调节衰老过程本身中发挥作用,因为改变在染色质上起作用的蛋白质通常会影响酵母、蠕虫、果蝇和小鼠的寿命。染色质与衰老领域正在迅速扩展,高分辨率基因组学工具使精确检测染色质环境或追踪与长寿相关的染色质因子成为可能,而这在以前是无法做到的。在这篇综述中,我们讨论了染色质与衰老研究的现状。我们列举了来自酵母、小鼠和人类的例子,但我们特别关注常用的衰老模型——蠕虫,其中有许多调节长寿的染色质因子的例子。我们既包括染色质与年龄相关变化的证据,也包括与核心组蛋白、核结构、染色质重塑和组蛋白修饰中长寿相关的特定染色质因子的证据。