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Reorganization of terminator DNA upon binding replication terminator protein: implications for the functional replication fork arrest complex.

机译:结合复制终止子蛋白后重组终止子DNA:对功能性复制叉阻滞复合物的影响。

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摘要

Termination of DNA replication in Bacillus subtilis involves the polar arrest of replication forks by a specific complex formed between the replication terminator protein (RTP) and DNA terminator sites. While determination of the crystal structure of RTP has facilitated our understanding of how a single RTP dimer interacts with terminator DNA, additional information is required in order to understand the assembly of a functional fork arrest complex, which requires an interaction between two RTP dimers and the terminator site. In this study, we show that the conformation of the major B.subtilis DNA terminator,TerI, becomes considerably distorted upon binding RTP. Binding of the first dimer of RTP to the B site of TerI causes the DNA to become slightly unwound and bent by approximately 40 degrees. Binding of a second dimer of RTP to the A site causes the bend angle to increase to approximately 60 degrees . We have used this new data to construct two plausible models that might explain how the ternary terminator complex can block DNA replication in a polar manner. In the first model, polarity of action is a consequence of the two RTP-DNA half-sites having different conformations. These different conformations result from different RTP-DNA contacts at each half-site (due to the intrinsic asymmetry of the terminator DNA), as well as interactions (direct or indirect) between the RTP dimers on the DNA. In the second model, polar fork arrest activity is a consequence of the different affinities of RTP for the A and B sites of the terminator DNA, modulated significantly by direct or indirect interactions between the RTP dimers.
机译:枯草芽孢杆菌中DNA复制的终止涉及复制叉的极性停滞,复制叉是由复制终止蛋白(RTP)和DNA终止位点之间形成的特定复合物形成的。虽然确定RTP的晶体结构有助于我们了解单个RTP二聚体如何与终止子DNA相互作用,但需要其他信息才能了解功能性叉扣配合物的组装,这需要两个RTP二聚体与RTP二聚体之间的相互作用。终结者站点。在这项研究中,我们表明主要的枯草芽孢杆菌DNA终止子,TerI的构象在结合RTP时变得相当扭曲。 RTP的第一个二聚体与TerI的B位点结合导致DNA稍微解开并弯曲约40度。 RTP的第二个二聚体与A位点的结合使弯曲角增加到大约60度。我们已经使用这一新数据构建了两个可能的模型,这些模型可能解释了三元终止子复合物如何以极性方式阻止DNA复制。在第一个模型中,作用的极性是具有不同构象的两个RTP-DNA半位的结果。这些不同的构象是由每个半位点处的不同RTP-DNA接触(由于终止子DNA的固有不对称性)以及DNA上RTP二聚体之间的相互作用(直接或间接)引起的。在第二个模型中,极叉停滞活性是RTP对终止子DNA的A和B位点的不同亲和力的结果,RTP二聚体之间的直接或间接相互作用显着调节了RTP的亲和力。

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