Tissue Specificity of DNA Damage and Repair.

IF 5.3 2区 医学 Q1 PHYSIOLOGY
Nicolas C Hoch
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引用次数: 3

Abstract

DNA is a remarkable biochemical macromolecule tasked with storing the genetic information that instructs life on planet Earth. However, its inherent chemical instability within the cellular milieu is incompatible with the accurate transmission of genetic information to subsequent generations. Therefore, biochemical pathways that continuously survey and repair DNA are essential to sustain life, and the fundamental mechanisms by which different DNA lesions are repaired have remained well conserved throughout evolution. Nonetheless, the emergence of multicellular organisms led to profound differences in cellular context and physiology, leading to large variations in the predominant sources of DNA damage between different cell types and in the relative contribution of different DNA repair pathways toward genome maintenance in different tissues. While we continue to make large strides into understanding how individual DNA repair mechanisms operate on a molecular level, much less attention is given to these cell type-specific differences. This short review aims to provide a broad overview of DNA damage and repair mechanisms to nonspecialists and to highlight some fundamental open questions in tissue and cell-type-specificity of these processes, which may have profound implications for our understanding of important pathophysiological processes such as cancer, neurodegeneration, and aging.

DNA损伤与修复的组织特异性。
DNA是一种非凡的生物化学大分子,其任务是储存指导地球上生命的遗传信息。然而,它在细胞环境中固有的化学不稳定性与遗传信息向后代的准确传递是不相容的。因此,持续调查和修复DNA的生化途径对于维持生命至关重要,而修复不同DNA损伤的基本机制在整个进化过程中一直保持着良好的保守性。尽管如此,多细胞生物的出现导致了细胞环境和生理上的深刻差异,导致不同细胞类型之间DNA损伤的主要来源以及不同组织中不同DNA修复途径对基因组维持的相对贡献存在巨大差异。虽然我们继续在理解个体DNA修复机制如何在分子水平上运作方面取得了很大进展,但对这些细胞类型特异性差异的关注却少得多。这篇简短的综述旨在为非专业人士提供DNA损伤和修复机制的广泛概述,并强调这些过程中组织和细胞类型特异性的一些基本开放性问题,这些问题可能对我们理解重要的病理生理过程(如癌症、神经退行性变和衰老)具有深远的意义。
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来源期刊
Physiology
Physiology 医学-生理学
CiteScore
14.50
自引率
0.00%
发文量
37
期刊介绍: Physiology journal features meticulously crafted review articles penned by esteemed leaders in their respective fields. These articles undergo rigorous peer review and showcase the forefront of cutting-edge advances across various domains of physiology. Our Editorial Board, comprised of distinguished leaders in the broad spectrum of physiology, convenes annually to deliberate and recommend pioneering topics for review articles, as well as select the most suitable scientists to author these articles. Join us in exploring the forefront of physiological research and innovation.
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