首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The PriA Replication Restart Protein Blocks Replicase Access Prior to Helicase Assembly and Directs Template Specificity through Its ATPase Activity
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The PriA Replication Restart Protein Blocks Replicase Access Prior to Helicase Assembly and Directs Template Specificity through Its ATPase Activity

机译:PriA复制重启蛋白在解旋酶组装之前阻止复制子的访问并通过其ATPase活性指导模板特异性。

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摘要

The PriA protein serves as an initiator for the restart of DNA replication on stalled replication forks and as a checkpoint protein that prevents the replicase from advancing in a strand displacement reaction on forks that do not contain a functional replicative helicase. We have developed a primosomal protein-dependent fluorescence resonance energy transfer (FRET) assay using a minimal fork substrate composed of synthetic oligonucleotides. We demonstrate that a self-loading reaction, which proceeds at high helicase concentrations, occurs by threading of a preassembled helicase over free 5′-ends, an event that can be blocked by attaching a steric block to the 5′-end or coating DNA with single-stranded DNA binding protein. The specificity of PriA for replication forks is regulated by its intrinsic ATPase. ATPase-defective PriA K230R shows a strong preference for substrates that contain no gap between the leading strand and the duplex portion of the fork, as demonstrated previously. Wild-type PriA prefers substrates with larger gaps, showing maximal activity on substrates on which PriA K230R is inactive. We demonstrate that PriA blocks replicase function on forks by blocking its binding.
机译:PriA蛋白充当停滞的复制叉上DNA复制重新启动的引发剂,并用作阻止复制酶在不包含功能性复制解旋酶的叉上发生链置换反应时前进的检查点蛋白。我们已经开发了一种使用合成寡核苷酸组成的最小叉底物进行的原始基因组蛋白依赖性荧光共振能量转移(FRET)分析方法。我们证明了在高解旋酶浓度下进行的自加载反应是通过在自由5'端穿线预组装的解旋酶而发生的,该事件可以通过将空间阻滞连接到5'端或包覆DNA来阻止与单链DNA结合蛋白结合。 PriA对复制叉的特异性受其固有的ATPase调控。 ATPase缺陷型PriA K230R对在前导链和叉子的双链体部分之间没有缺口的底物表现出强烈的偏爱,如前所述。野生型PriA偏好具有较大缺口的底物,在PriA K230R处于非活性状态的底物上显示最大活性。我们证明PriA通过阻止其绑定来阻止forks上的复制功能。

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