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Insight into F plasmid DNA segregation revealed by structures of SopB and SopB–DNA complexes

机译:通过SopB和SopB–DNA复合物的结构揭示F质粒DNA分离

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摘要

Accurate DNA segregation is essential for genome transmission. Segregation of the prototypical F plasmid requires the centromere-binding protein SopB, the NTPase SopA and the sopC centromere. SopB displays an intriguing range of DNA-binding properties essential for partition; it binds sopC to form a partition complex, which recruits SopA, and it also coats DNA to prevent non-specific SopA–DNA interactions, which inhibits SopA polymerization. To understand the myriad functions of SopB, we determined a series of SopB–DNA crystal structures. SopB does not distort its DNA site and our data suggest that SopB–sopC forms an extended rather than wrapped partition complex with the SopA-interacting domains aligned on one face. SopB is a multidomain protein, which like P1 ParB contains an all-helical DNA-binding domain that is flexibly attached to a compact (β3–α)2 dimer-domain. Unlike P1 ParB, the SopB dimer-domain does not bind DNA. Moreover, SopB contains a unique secondary dimerization motif that bridges between DNA duplexes. Both specific and non-specific SopB–DNA bridging structures were observed. This DNA-linking function suggests a novel mechanism for in trans DNA spreading by SopB, explaining how it might mask DNA to prevent DNA-mediated inhibition of SopA polymerization.
机译:准确的DNA分离对于基因组传输至关重要。原型F质粒的分离需要着丝粒结合蛋白SopB,NTPase SopA和sopC着丝粒。 SopB显示了对分区必不可少的有趣的DNA结合特性。它与sopC结合形成一个分区复合物,该复合物募集了SopA,它还包裹了DNA以防止非特异性SopA-DNA相互作用,从而抑制了SopA聚合。为了了解SopB的多种功能,我们确定了一系列SopB–DNA晶体结构。 SopB不会扭曲其DNA位点,我们的数据表明,SopB–sopC形成了一个扩展而不是包裹的分区复合体,且与SopA相互作用的结构域排列在一个面上。 SopB是一种多结构域蛋白,与P1 ParB一样,它包含一个全螺旋DNA结合结构域,该结构域可灵活地连接到紧凑的(β3-α)2二聚体结构域。与P1 ParB不同,SopB二聚体结构域不结合DNA。此外,SopB包含一个独特的二级二聚化基序,可在DNA双链体之间架桥。观察到特异性和非特异性SopB–DNA桥接结构。这种DNA链接功能为SopB在反式DNA扩散中提出了一种新的机制,解释了它可能如何掩盖DNA以防止DNA介导的对SopA聚合的抑制。

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