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Error-prone replication for better or worse

机译:容易出错的复制,无论是好是坏

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Precise genome duplication requires accurate copying by DNA polymerases and the elimination of occasional mistakes by proofreading exonucleases and mismatch repair enzymes. The commonly held belief that 'if something is worth doing, then it's worth doing well' normally applies to DNA replication and repair, however, there are exceptions. This review describes elements that are crucial to cell fitness, evolution and survival in the recently discovered error-prone DNA polymerases. Large numbers of errant DNA polymerases, spanning microorganisms to humans, are used to rescue stalled replication forks by copying damaged DNA and even undamaged DNA to generate 'purposeful' mutations that generate genetic diversity in times of stress. Here we focus on low-fidelity polymerases from bacteria, comparing Escherichia coli, archeabacteria and those most recently discovered in Gram-positive Bacilli, Streptococcus, pathogenic Mycobacterium and intein-containing cyanobacteria.
机译:精确的基因组复制需要DNA聚合酶准确复制,并通过校对核酸外切酶和错配修复酶来消除偶发的错误。人们普遍认为“如果某件事值得做,那么就值得做好”,通常适用于DNA复制和修复,但是也有例外。这篇综述描述了在最近发现的容易出​​错的DNA聚合酶中对于细胞适应性,进化和存活至关重要的元素。大量错误的DNA聚合酶(跨越人类的微生物)被用于通过复制受损的DNA甚至未损坏的DNA来产生“有目的的”突变来挽救停滞的复制叉,从而在压力时产生遗传多样性。在这里,我们集中于细菌的低保真聚合酶,比较大肠杆菌,古细菌和最近在革兰氏阳性杆菌,链球菌,致病性分枝杆菌和含内含肽的蓝细菌中发现的那些。

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