α谱蛋白在DNA修复中的关键作用:μ-calpain和Fanconi贫血蛋白的重要性。

IF 2.8 4区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Experimental Biology and Medicine Pub Date : 2025-05-01 eCollection Date: 2025-01-01 DOI:10.3389/ebm.2025.10537
Muriel W Lambert
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引用次数: 0

摘要

非红系谱蛋白是维持细胞和核膜结构完整性和柔韧性的重要蛋白质,对许多功能重要的细胞过程至关重要。其中一种蛋白,非红系α谱蛋白(α spii),在DNA修复中起关键作用,特别是DNA链间交联(ICLs)的修复,它作为支架,将修复蛋白募集到损伤部位。α - spii的缺失或破坏是许多疾病的重要因素。其中之一是范可尼贫血(FA),这是一种以骨髓衰竭、染色体不稳定、癌症易感性、先天性异常和DNA ICL修复缺陷为特征的遗传性疾病。值得注意的是,αSpII的破坏发生在许多FA互补组的细胞中,由于蛋白酶μ-calpain的过度切割,导致端粒和非端粒DNA ICLs的修复缺陷。μ-calpain siRNA在FA细胞中敲低μ-calpain可使αSpII水平恢复正常,并修复端粒和非端粒DNA的DNA ICLs,表明αSpII的稳定性在修复过程中的重要性。假设μ-calpain对αSpII的过度切割与FA中DNA ICL修复缺陷之间存在机制联系,而FA中缺乏FA的FA蛋白在维持αSpII的稳定性和阻止μ-calpain对αSpII的切割中起关键作用。所有这些事件都被认为是参与FA病理生理的重要关键因素,并为潜在的治疗干预提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Critical role of alpha spectrin in DNA repair: the importance of μ-calpain and Fanconi anemia proteins.

Nonerythroid spectrins are proteins important in maintaining the structural integrity and flexibility of the cell and nuclear membranes and are essential for a number of functionally important cellular processes. One of these proteins, nonerythroid α spectrin (αSpII), plays a critical role in DNA repair, specifically repair of DNA interstrand crosslinks (ICLs), where it acts as a scaffold, recruiting repair proteins to sites of damage. Loss or breakdown of αSpII is an important factor in a number of disorders. One of these is Fanconi anemia (FA), a genetic disorder characterized by bone marrow failure, chromosome instability, cancer predisposition, congenital abnormalities and a defect in DNA ICL repair. Significantly, breakdown of αSpII occurs in cells from a number of FA complementation groups, due to excessive cleavage by the protease, μ-calpain, leading to defective repair of DNA ICLs in telomeric and non-telomeric DNA. Knockdown of μ-calpain in FA cells by μ-calpain siRNA results in restoration of αSpII levels to normal and repair of DNA ICLs in telomeric and non-telomeric DNA, demonstrating the importance of αSpII stability in the repair process. It is hypothesized that there is a mechanistic link between excessive cleavage of αSpII by μ-calpain and defective DNA ICL repair in FA and that FA proteins, which are deficient in FA, play a key role in maintaining the stability of αSpII and preventing its cleavage by μ-calpain. All of these events are proposed to be important key factors involved in the pathophysiology of FA and suggest new avenues for potential therapeutic intervention.

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来源期刊
Experimental Biology and Medicine
Experimental Biology and Medicine 医学-医学:研究与实验
CiteScore
6.00
自引率
0.00%
发文量
157
审稿时长
1 months
期刊介绍: Experimental Biology and Medicine (EBM) is a global, peer-reviewed journal dedicated to the publication of multidisciplinary and interdisciplinary research in the biomedical sciences. EBM provides both research and review articles as well as meeting symposia and brief communications. Articles in EBM represent cutting edge research at the overlapping junctions of the biological, physical and engineering sciences that impact upon the health and welfare of the world''s population. Topics covered in EBM include: Anatomy/Pathology; Biochemistry and Molecular Biology; Bioimaging; Biomedical Engineering; Bionanoscience; Cell and Developmental Biology; Endocrinology and Nutrition; Environmental Health/Biomarkers/Precision Medicine; Genomics, Proteomics, and Bioinformatics; Immunology/Microbiology/Virology; Mechanisms of Aging; Neuroscience; Pharmacology and Toxicology; Physiology; Stem Cell Biology; Structural Biology; Systems Biology and Microphysiological Systems; and Translational Research.
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