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Epigenetics recording varied environment and complex cell events represents the origin of cellular aging

机译:表观遗传学记录了变化的环境和复杂的细胞事件代表了细胞衰老的起源

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摘要

Although a relationship between epigenetics and aging phenotypic changes has been established, a theoretical explanation of the intrinsic connection between the epigenetics and aging is lacking. In this essay, we propose that epigenetic recording of varied cell environment and complex history could be an origin of cellular aging. Through epigenetic modifications, the environment and historical events can induce the chromatin template into an activated or repressive accessible structure, thereby shaping the DNA template into a spectrum of chromatin states. The inner nature of diversity and conflicts born by the cell environment and its historical events are hence recorded into the chromatin template. This could result in a dissipated spectrum of the chromatin state and chaos in overall gene expression. An unavoidable degradation of epigenome entropy, similar to Shannon entropy, would be consequently induced. The resultant disorder in epigenome, characterized by corrosion of epigenome entropy as reflected in chromatin template, can be stably memorized and propagated through cell division. Furthermore, the hysteretic nature of epigenetics responding to the emerging environment could exacerbate the degradation of epigenome entropy. As well as stochastic errors, we propose that outside entropy (or chaos) derived from the varied environment and complex cell history, gradually input and imprinted into the chromatin via epigenetic modifications, would lead inevitably to cellular aging, the extent of which could be aggravated by hysteresis of epigenetics without error erasing and correction.
机译:尽管已经建立了表观遗传学与衰老表型变化之间的关系,但缺乏对表观遗传学与衰老之间的内在联系的理论解释。在本文中,我们提出各种细胞环境和复杂历史的表观遗传记录可能是细胞衰老的起源。通过表观遗传修饰,环境和历史事件可以将染色质模板诱导为活化或抑制的可及结构,从而使DNA模板成形为一系列染色质状态。细胞环境及其历史事件所产生的多样性和冲突的内在本质因此被记录在染色质模板中。这可能导致染色质状态的耗散光谱和整个基因表达的混乱。结果将导致表观基因组熵不可避免的降解,类似于香农熵。由此产生的表观基因组疾病以染色质模板反映的表观基因组熵腐蚀为特征,可以通过细胞分裂稳定地记忆和传播。此外,表观遗传学对新兴环境的反应迟滞性可能加剧表观基因组熵的退化。除了随机误差外,我们还提出,由于环境变化和复杂的细胞历史而产生的外部熵(或混沌),通过表观遗传修饰逐渐输入并印记在染色质上,将不可避免地导致细胞衰老,其程度可能会加剧通过表观遗传学的滞后作用而没有错误消除和校正。

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