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首页> 外文期刊>Nature Communications >Molecular basis for PrimPol recruitment to replication forks by RPA
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Molecular basis for PrimPol recruitment to replication forks by RPA

机译:RPA将PrimPol募集到复制叉的分子基础

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摘要

DNA damage and secondary structures can stall the replication machinery. Cells possess numerous tolerance mechanisms to complete genome duplication in the presence of such impediments. In addition to translesion synthesis (TLS) polymerases, most eukaryotic cells contain a multifunctional replicative enzyme called primase–polymerase (PrimPol) that is capable of directly bypassing DNA damage by TLS, as well as repriming replication downstream of impediments. Here, we report that PrimPol is recruited to reprime through its interaction with RPA. Using biophysical and crystallographic approaches, we identify that PrimPol possesses two RPA-binding motifs and ascertained the key residues required for these interactions. We demonstrate that one of these motifs is critical for PrimPol’s recruitment to stalled replication forks in vivo . In addition, biochemical analysis reveals that RPA serves to stimulate the primase activity of PrimPol. Together, these findings provide significant molecular insights into PrimPol’s mode of recruitment to stalled forks to facilitate repriming and restart.
机译:DNA损伤和二级结构可能会使复制机制停滞。在这种障碍的存在下,细胞拥有多种耐受机制来完成基因组复制。除跨病变合成(TLS)聚合酶外,大多数真核细胞还包含一种称为primase-polymerase(PrimPol)的多功能复制酶,该酶能够直接绕过TLS对DNA的破坏,并能在障碍物下游重新启动复制。在这里,我们报告说PrimPol被招募来通过其与RPA的交互来重新启动。使用生物物理和晶体学方法,我们确定PrimPol具有两个RPA结合基序,并确定了这些相互作用所需的关键残基。我们证明了其中一个图案对于PrimPol募集到体内停滞的复制叉至关重要。此外,生化分析表明RPA可刺激PrimPol的启动酶活性。总之,这些发现为PrimPol的停滞货叉招募模式提供了重要的分子见解,从而有助于重新启动和重新启动。

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