Roles of DNA polymerases in replication, repair, and recombination in eukaryotes.

Youri I Pavlov, Polina V Shcherbakova, Igor B Rogozin
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引用次数: 131

Abstract

The functioning of the eukaryotic genome depends on efficient and accurate DNA replication and repair. The process of replication is complicated by the ongoing decomposition of DNA and damage of the genome by endogenous and exogenous factors. DNA damage can alter base coding potential resulting in mutations, or block DNA replication, which can lead to double-strand breaks (DSB) and to subsequent chromosome loss. Replication is coordinated with DNA repair systems that operate in cells to remove or tolerate DNA lesions. DNA polymerases can serve as sensors in the cell cycle checkpoint pathways that delay cell division until damaged DNA is repaired and replication is completed. Eukaryotic DNA template-dependent DNA polymerases have different properties adapted to perform an amazingly wide spectrum of DNA transactions. In this review, we discuss the structure, the mechanism, and the evolutionary relationships of DNA polymerases and their possible functions in the replication of intact and damaged chromosomes, DNA damage repair, and recombination.

真核生物DNA聚合酶在复制、修复和重组中的作用。
真核生物基因组的功能依赖于有效和准确的DNA复制和修复。由于内源性和外源性因素对DNA的持续分解和基因组的损伤,复制过程变得复杂。DNA损伤可以改变碱基编码潜能,导致突变,或阻断DNA复制,从而导致双链断裂(DSB)和随后的染色体丢失。复制是与DNA修复系统协调的,DNA修复系统在细胞中运作,以消除或容忍DNA损伤。DNA聚合酶可以作为细胞周期检查点途径的传感器,延迟细胞分裂,直到受损的DNA被修复和复制完成。真核生物DNA模板依赖的DNA聚合酶具有不同的特性,适合于执行令人惊讶的广泛的DNA交易。本文就DNA聚合酶的结构、机制、进化关系及其在完整染色体和受损染色体的复制、DNA损伤修复和重组等方面可能发挥的作用作一综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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