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The Balance between Recombination Enzymes and Accessory Replicative Helicases in Facilitating Genome Duplication

机译:重组酶和辅助复制解旋酶之间的平衡,以促进基因组复制

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Accessory replicative helicases aid the primary replicative helicase in duplicating protein-bound DNA, especially transcribed DNA. Recombination enzymes also aid genome duplication by facilitating the repair of DNA lesions via strand exchange and also processing of blocked fork DNA to generate structures onto which the replisome can be reloaded. There is significant interplay between accessory helicases and recombination enzymes in both bacteria and lower eukaryotes but how these replication repair systems interact to ensure efficient genome duplication remains unclear. Here, we demonstrate that the DNA content defects of Escherichia coli cells lacking the strand exchange protein RecA are driven primarily by conflicts between replication and transcription, as is the case in cells lacking the accessory helicase Rep. However, in contrast to Rep, neither RecA nor RecBCD, the helicase/exonuclease that loads RecA onto dsDNA ends, is important for maintaining rapid chromosome duplication. Furthermore, RecA and RecBCD together can sustain viability in the absence of accessory replicative helicases but only when transcriptional barriers to replication are suppressed by an RNA polymerase mutation. Our data indicate that the minimisation of replisome pausing by accessory helicases has a more significant impact on successful completion of chromosome duplication than recombination-directed fork repair.
机译:辅助复制解旋酶辅助主要复制解旋酶复制与蛋白质结合的DNA,特别是转录的DNA。重组酶还通过促进通过链交换的DNA损伤修复以及处理封闭的叉子DNA以产生可在其上重载复制体的结构来辅助基因组复制。在细菌和低等真核生物中,辅助解旋酶和重组酶之间存在显着的相互作用,但这些复制修复系统如何相互作用以确保有效的基因组复制尚不清楚。在这里,我们证明缺乏链交换蛋白RecA的大肠杆菌细胞的DNA含量缺陷主要是由复制和转录之间的冲突引起的,就像缺乏辅助解旋酶Rep的细胞一样。 RecBCD,也就是将RecA加载到dsDNA末端的解旋酶/核酸外切酶,对于维持快速的染色体复制都很重要。此外,RecA和RecBCD一起可以在不存在辅助复制解旋酶的情况下维持生存能力,但仅当复制的转录障碍被RNA聚合酶突变抑制时才可维持。我们的数据表明,由辅助解旋酶引起的复制体停顿的最小化对染色体复制成功完成的影响比重组指导的叉修复更为显着。

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