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Sequential and ordered assembly of E1 initiator complexes on the papillomavirus origin of DNA replication generates progressive structural changes related to melting

机译:E1引发剂复合物在乳头瘤病毒DNA复制起点上的顺序和有序组装会产生与融化有关的进行性结构变化

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摘要

Multiple binding sites for an initiator protein are a common feature of replicator sequences from various organisms. By binding to the replicator, initiators mark the site and contribute to melting or distortion of the DNA by largely unknown mechanisms. Here we analyze origin of DNA replication (ori) binding by the E1 initiator and show sequential binding to a set of overlapping binding sites. The assembly of these initiator complexes is controlled by a gradual reduction in the dependence of interactions between the initiator and DNA and a gradual increase in the reliance on interactions between initiator molecules, providing a mechanism for sequential and orderly assembly. Importantly, the binding of the initiator causes progressive structural alterations both in the sites and in the sequences flanking the sites, eventually generating severe structural alterations. These results indicate that the process of template melting may be incremental, where binding of each initiator molecule serves as a wedge that upon binding gradually alters the template structure. This mechanism may explain the requirement for multiple initiator binding sites that is observed in many ori's.
机译:起始蛋白的多个结合位点是来自各种生物的复制子序列的共同特征。通过与复制子结合,引发剂标记了该位点,并通过很大程度上未知的机制促进了DNA的融化或变形。在这里,我们分析了由E1引发剂引起的DNA复制(ori)结合的起源,并显示了对一系列重叠结合位点的顺序结合。这些引发剂复合物的组装受引发剂和DNA之间相互作用的依赖性的逐渐降低和对引发剂分子之间相互作用的依赖性的逐渐升高的控制,从而提供了顺序和有序组装的机制。重要的是,引发剂的结合在位点和位点两侧的序列中引起渐进的结构改变,最终产生严重的结构改变。这些结果表明模板熔化的过程可能是渐进的,其中每个引发剂分子的结合起楔形作用,结合后逐渐改变模板结构。该机制可以解释在许多ori中观察到的多个引发剂结合位点的要求。

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    Chen G.; Stenlund A.;

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  • 年度 2002
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