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The Spectrum of Replication Errors in the Absence of Error Correction Assayed Across the Whole Genome of Escherichia coli

机译:整个大肠杆菌基因组中没有错误校正的复制错误谱

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摘要

When the DNA polymerase that replicates the Escherichia coli chromosome, DNA polymerase III, makes an error, there are two primary defenses against mutation: proofreading by the ϵ subunit of the holoenzyme and mismatch repair. In proofreading-deficient strains, mismatch repair is partially saturated and the cell’s response to DNA damage, the SOS response, may be partially induced. To investigate the nature of replication errors, we used mutation accumulation experiments and whole-genome sequencing to determine mutation rates and mutational spectra across the entire chromosome of strains deficient in proofreading, mismatch repair, and the SOS response. We report that a proofreading-deficient strain has a mutation rate 4000-fold greater than wild-type strains. While the SOS response may be induced in these cells, it does not contribute to the mutational load. Inactivating mismatch repair in a proofreading-deficient strain increases the mutation rate another 1.5-fold. DNA polymerase has a bias for converting G:C to A:T base pairs, but proofreading reduces the impact of these mutations, helping to maintain the genomic G:C content. These findings give an unprecedented view of how polymerase and error-correction pathways work together to maintain E. coli’s low mutation rate of 1 per 1000 generations.
机译:当复制大肠杆菌染色体的DNA聚合酶DNA聚合酶III出错时,存在两种主要的防御突变的方法:通过全酶的ϵ亚基进行校对和错配修复。在校对不足的菌株中,错配修复部分饱和,细胞对DNA损伤的反应(SOS反应)可能被部分诱导。为了研究复制错误的性质,我们使用突变积累实验和全基因组测序来确定缺乏校对,错配修复和SOS反应的菌株整个染色体上的突变率和突变谱。我们报告,校对缺陷菌株的突变率比野生型菌株高4000倍。虽然可以在这些细胞中诱导SOS应答,但它不会增加突变负荷。校对缺陷品系中的失配修复失活使突变率增加了1.5倍。 DNA聚合酶具有将G:C转换为A:T碱基对的偏见,但校对减少了这些突变的影响,有助于维持基因组G:C含量。这些发现为聚合酶和纠错途径如何协同工作以维持大肠杆菌每1000代1的低突变率提供了前所未有的见解。

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