[RBM-B Motif的V546E和D547H点突变不影响PrimPol与RPA和DNA的结合]。

Q3 Medicine
A A Manukyan, A V Makarova, E O Boldinova
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引用次数: 0

摘要

人类引物聚合酶PrimPol是DNA损伤位点复制叉停止时DNA合成重启机制的关键参与者。PrimPol具有DNA引物酶活性,可合成DNA引物,用于DNA聚合酶继续复制。PrimPol在DNA损伤位点的招募,以及催化活性的刺激,取决于与复制蛋白RPA的相互作用,RPA结合单链DNA。PrimPol的c端结构域包含一个带负电荷的rpa结合基序(RBM),其突变破坏了两种蛋白质之间的相互作用。RBM基序还在PrimPol与DNA相互作用的负调控中发挥作用。RBM的缺失极大地增加了PrimPol与DNA的亲和力,并刺激了PrimPol的活性。rbm介导的PrimPol活性调控机制尚不清楚。RBM相对强的负电荷可能有助于PrimPol与RPA和DNA的相互作用。RBM包含两个带负电的区域RBM- a和RBM- b。在这项工作中,我们在RBM-B PrimPol中增加(取代V546E)或减少(取代D547H)一个负电荷,并对这些突变体进行了生化表征。结果表明,RBM-B电荷的局部变化不影响PrimPol与DNA和RPA的相互作用,也不影响酶的催化活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Point Mutations V546E and D547H of the RBM-B Motif Do Not Affect the Binding of PrimPol to RPA and DNA].

The human primase-polymerase PrimPol is a key participant of the mechanism of DNA synthesis restart during replication fork stalling at sites of DNA damage. PrimPol has DNA primase activity and synthesizes DNA primers that are used by processive DNA polymerases to continue replication. Recruitment of PrimPol to the sites of DNA damage, as well as stimulation of catalytic activity, depends on interaction with the replicative protein RPA, which binds single-stranded DNA. The C-terminal domain of PrimPol contains a negatively charged RPA-binding motif (RBM), mutations in which disrupt the interaction between two proteins. The RBM motif also plays a role in the negative regulation of PrimPol interaction with DNA. Deletion of the RBM dramatically increases PrimPol affinity to DNA and stimulates PrimPol activity. The mechanism of RBM-mediated regulation of PrimPol activity is unclear. The relatively strong negative charge of RBM potentially may contribute to the interaction of PrimPol with RPA and DNA. RBM contains two negatively charged regions RBM-A and RBM-B. In this work, we additionally added (substitution V546E) or decreased (substitution D547H) a negative charge in RBM-B PrimPol and characterized these mutant variants biochemically. It was shown that the local change in the RBM-B charge has no effect on the interaction of PrimPol with DNA and RPA, or of the catalytic activity of the enzyme.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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