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错配修复的细胞生理学

Cellular physiology of mismatch repair.

作者信息

Wu X, Khalpey Z, Cascalho M

机构信息

Transplantation Biology, Mayo Clinic, 200 First Street SW, Medical Sciences 2-113, Rochester, MN 55905, USA.

出版信息

Curr Pharm Des. 2004;10(32):4121-6. doi: 10.2174/1381612043382468.

Abstract

The DNA mismatch repair system maintains genomic stability by correcting DNA sequence errors generated during DNA replication, during genetic exchanges between chromosomes i.e., recombination, and by correcting DNA lesions caused by mutagenic agents such as cis-platinum. Post-synthesis mismatch repair improves almost 1000-fold the fidelity of DNA replication; however, the functions of mismatch repair proteins extend well beyond DNA repair. Recent studies suggest that mismatch repair is part of the machinery that couples DNA damage and repair to cell cycle regulation and apoptosis. These studies indicate that tolerance to certain DNA lesions (such as methylation and cis-platinum adducts) is associated with inefficient activation of cell cycle checkpoints and inefficient activation of apoptosis in mismatch repair deficient cells. Hence, mismatch repair proteins regulate the survival threshold to DNA damage, and this function provides a novel platform for understanding the role of mismatch repair in B cells, in tumor formation, as well as in resistance to chemotherapy. In this communication, we review how mismatch repair may contribute to the physiology of cells and may be regulated by the intracellular trafficking of mismatch repair proteins.

摘要

DNA错配修复系统通过纠正DNA复制过程中产生的DNA序列错误、染色体间基因交换(即重组)过程中产生的错误以及纠正由诱变剂(如顺铂)引起的DNA损伤来维持基因组稳定性。合成后错配修复将DNA复制的保真度提高了近1000倍;然而,错配修复蛋白的功能远远超出了DNA修复的范畴。最近的研究表明,错配修复是将DNA损伤和修复与细胞周期调控及细胞凋亡联系起来的机制的一部分。这些研究表明,对某些DNA损伤(如甲基化和顺铂加合物)的耐受性与错配修复缺陷细胞中细胞周期检查点的低效激活及细胞凋亡的低效激活有关。因此,错配修复蛋白调节细胞对DNA损伤的存活阈值,这一功能为理解错配修复在B细胞、肿瘤形成以及化疗耐药性中的作用提供了一个新的平台。在本通讯中,我们综述了错配修复如何对细胞生理产生影响以及可能如何受错配修复蛋白的细胞内运输调控。

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