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Localization of an accessory helicase at the replisome is critical in sustaining efficient genome duplication

机译:辅助解旋酶在复制体上的定位对于维持有效的基因组复制至关重要

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Genome duplication requires accessory helicases to displace proteins ahead of advancing replication forks. Escherichia coli contains three helicases, Rep, UvrD and DinG, that might promote replication of protein-bound DNA. One of these helicases, Rep, also interacts with the replicative helicase DnaB. We demonstrate that Rep is the only putative accessory helicase whose absence results in an increased chromosome duplication time. We show also that the interaction between Rep and DnaB is required for Rep to maintain rapid genome duplication. Furthermore, this Rep–DnaB interaction is critical in minimizing the need for both recombinational processing of blocked replication forks and replisome reassembly, indicating that colocalization of Rep and DnaB minimizes stalling and subsequent inactivation of replication forks. These data indicate that E. coli contains only one helicase that acts as an accessory motor at the fork in wild-type cells, that such an activity is critical for the maintenance of rapid genome duplication and that colocalization with the replisome is crucial for this function. Given that the only other characterized accessory motor, Saccharomyces cerevisiae Rrm3p, associates physically with the replisome, our demonstration of the functional importance of such an association indicates that colocalization may be a conserved feature of accessory replicative motors.
机译:基因组复制需要辅助解旋酶来置换蛋白质,然后再进行复制。大肠杆菌包含三种解旋酶Rep,UvrD和DinG,它们可能会促进结合蛋白质的DNA的复制。这些解旋酶之一Rep也与复制性解旋酶DnaB相互作用。我们证明Rep是唯一假定的辅助解旋酶,其缺失会导致染色体复制时间增加。我们还表明,Rep和DnaB之间的相互作用是Rep保持快速基因组复制所必需的。此外,这种Rep–DnaB相互作用对于最大限度地减少对封闭的复制叉和复制体重组的重组处理至关重要,这表明Rep和DnaB的共定位可最大程度地减少复制叉的停滞和随后的失活。这些数据表明,大肠杆菌仅包含一种解旋酶,在野生型细胞中作为叉的辅助马达,这种活性对于维持快速的基因组复制至关重要,而与复制体的共定位对该功能至关重要。 。鉴于仅有的其他特征性辅助马达,即酿酒酵母Rrm3p在物理上与复制体相关联,我们对这种关联的功能重要性的证明表明,共定位可能是辅助复制马达的保守特征。

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