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Identification of Subunit Binding Positions on a Model Fork and Displacements That Occur during Sequential Assembly of the Escherichia coli Primosome

机译:鉴定模型叉上的亚基结合位置和在大肠杆菌Primosome的顺序组装过程中发生的位移

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摘要

When replication stalls and forks disassemble, the restart primosome is required to reload the replicative helicase so that chromosomal replication can be reinitiated. We have taken a photo-cross-linking approach, using model replication forks containing a phenyl diazirine placed at single locations, to determine the positions of primosomal protein binding and changes in interactions that occur during the assembly reaction. This approach revealed a novel mode for single-stranded DNA-binding protein (SSB)-DNA binding, in which SSB interacts with both the leading and lagging single-strand segments and the parental duplex of the fork. Cross-linking to a novel region within SSB is observed only when it is bound to forked structures. This binding mode is also followed by PriB. PriA binds to the fork, excluding SSB and PriB, interacting with the primer terminus, single-stranded leading and lagging strands and duplex in immediate proximity of the fork. SSB binds to flanking single-stranded segments distal to the fork in the presence of PriA. The addition of PriB or DnaT to a PriA-SSB-fork complex does not lead to cross-linking or displacement, suggesting that their association is through protein-protein interactions at early stages of the reaction. Upon addition of DnaC and the DnaB helicase in the presence of ATPγS, helicase is assembled, leading to contacts within the duplex region on the tracking (lagging) strand and strong contacts with the displaced leading single strand near the fork. PriA is displaced from DNA upon helicase assembly.
机译:当复制停滞并分叉时,需要重新启动原核糖体才能重新加载复制解旋酶,以便可以重新启动染色体复制。我们采用了光交联方法,使用模型复制叉将苯二嗪放置在单个位置上,以确定原始蛋白质结合的位置以及在组装反应过程中发生的相互作用的变化。这种方法揭示了一种单链DNA结合蛋白(SSB)-DNA结合的新模式,其中SSB与叉子的前导链和滞后单链片段以及亲本双链体相互作用。仅在与分叉结构结合时,才能观察到与SSB内新区域的交联。 PriB也遵循此绑定模式。 PriA结合叉(不包括SSB和PriB),并与叉末端附近的引物末端,单链前导链和落后链以及双链体相互作用。在存在PriA的情况下,SSB结合到叉子远端的侧翼单链区段。向PriA-SSB-叉子复合物中添加PriB或DnaT不会导致交联或置换,表明它们的缔合是通过反应早期的蛋白质-蛋白质相互作用。在ATPγS存在下添加DnaC和DnaB解旋酶后,组装解旋酶,导致跟踪(滞后)链上的双链体区域内发生接触,并与叉附近的移位前导单链发生牢固接触。解旋酶组装后,PriA从DNA置换。

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