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从静止到修复:保障静止细胞中的基因组完整性。

From rest to repair: Safeguarding genomic integrity in quiescent cells.

机构信息

Sir William Dunn School of Pathology, South Parks Road, Oxford, UK.

Sir William Dunn School of Pathology, South Parks Road, Oxford, UK.

出版信息

DNA Repair (Amst). 2024 Oct;142:103752. doi: 10.1016/j.dnarep.2024.103752. Epub 2024 Aug 20.

Abstract

Quiescence is an important non-pathological state in which cells pause cell cycle progression temporarily, sometimes for decades, until they receive appropriate proliferative stimuli. Quiescent cells make up a significant proportion of the body, and maintaining genomic integrity during quiescence is crucial for tissue structure and function. While cells in quiescence are spared from DNA damage associated with DNA replication or mitosis, they are still exposed to various sources of endogenous DNA damage, including those induced by normal transcription and metabolism. As such, it is vital that cells retain their capacity to effectively repair lesions that may occur and return to the cell cycle without losing their cellular properties. Notably, while DNA repair pathways are often found to be downregulated in quiescent cells, emerging evidence suggests the presence of active or differentially regulated repair mechanisms. This review aims to provide a current understanding of DNA repair processes during quiescence in mammalian systems and sheds light on the potential pathological consequences of inefficient or inaccurate repair in quiescent cells.

摘要

静止是一种重要的非病理性状态,在此状态下细胞暂时停止细胞周期进程,有时甚至长达数十年,直到它们接收到适当的增殖刺激。静止细胞构成了身体的重要比例,在静止期间保持基因组完整性对于组织结构和功能至关重要。虽然静止中的细胞免受与 DNA 复制或有丝分裂相关的 DNA 损伤,但它们仍然会受到各种内源性 DNA 损伤源的影响,包括正常转录和代谢所诱导的损伤。因此,细胞必须保持有效修复可能发生的损伤并在不丧失其细胞特性的情况下返回细胞周期的能力。值得注意的是,尽管在静止细胞中经常发现 DNA 修复途径下调,但新出现的证据表明存在活跃或差异化调节的修复机制。本综述旨在提供对哺乳动物系统中静止期间 DNA 修复过程的当前理解,并阐明在静止细胞中无效或不准确修复的潜在病理后果。

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