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人类 PrimPol DNA 聚合酶活性的动力学分析表明,该酶通常是一种易错酶,但能够准确地绕过 7,8-二氢-8-氧代-2'-脱氧鸟苷。

Kinetic analysis of human PrimPol DNA polymerase activity reveals a generally error-prone enzyme capable of accurately bypassing 7,8-dihydro-8-oxo-2'-deoxyguanosine.

机构信息

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences , Little Rock, Arkansas 72205-7199, United States.

出版信息

Biochemistry. 2014 Oct 21;53(41):6584-94. doi: 10.1021/bi501024u. Epub 2014 Oct 10.

Abstract

Recent studies have identified human PrimPol as a new RNA/DNA primase and translesion DNA synthesis polymerase (TLS pol) that contributes to nuclear and mitochondrial DNA replication. We investigated the mechanism of PrimPol polymerase activity on both undamaged and damaged DNA substrates. With Mg²⁺ as a cofactor, PrimPol binds primer-template DNA with low affinity K(d,DNA) values (∼200-1200 nM). DNA binding is enhanced 34-fold by Mn²⁺ (K(d,DNA) = 27 nM). The pol activity of PrimPol is increased 400-1000-fold by Mn²⁺ compared to Mg²⁺ based on steady-state kinetic parameters. PrimPol makes a mistake copying undamaged DNA once every ∼100-2500 insertions events, which is comparable to other TLS pols, and the fidelity of PrimPol is ∼1.7-fold more accurate when Mg²⁺ is the cofactor compared to Mn²⁺. PrimPol inserts dCMP opposite 8-oxo-dG with 2- (Mn²⁺) to 6-fold (Mg²⁺) greater efficiency than dAMP misinsertion. PrimPol-catalyzed dCMP insertion opposite 8-oxo-dG proceeds at ∼25% efficiency relative to unmodified template dG, and PrimPol readily extends from dC:8-oxo-dG base pairs (bps) with ∼2-fold greater efficiency than dA:8-oxo-dG bps. A tetrahydrofuran (THF) abasic-site mimic decreases PrimPol activity to ∼0.04%. In summary, PrimPol exhibits the fidelity typical of other TLS pols, is rather unusual in the degree of activation afforded by Mn²⁺, and accurately bypasses 8-oxo-dG, a DNA lesion of special relevance to mitochondrial DNA replication and transcription.

摘要

最近的研究已经确定人类 PrimPol 是一种新的 RNA/DNA 引发酶和跨损伤 DNA 合成聚合酶(TLS pol),它有助于核和线粒体 DNA 复制。我们研究了 PrimPol 在未受损和受损 DNA 底物上的聚合酶活性的机制。在镁离子作为辅助因子的情况下,PrimPol 以低亲和力 K(d,DNA) 值(约 200-1200 nM)结合引物-模板 DNA。锰离子(K(d,DNA) = 27 nM)使 DNA 结合增强 34 倍。与基于镁离子的聚合酶活性相比,锰离子将 PrimPol 的聚合酶活性提高了 400-1000 倍,根据稳态动力学参数。PrimPol 在复制未受损的 DNA 时,每 100-2500 次插入事件中会犯一次错误,这与其他 TLS pol 相当,并且当镁离子作为辅助因子时,PrimPol 的保真度比锰离子高 1.7 倍。PrimPol 以 2-(锰离子)至 6-(镁离子)的效率插入 dCMP 与 8-oxo-dG 相对,比 dAMP 错误插入的效率更高。PrimPol 催化的 dCMP 插入 8-oxo-dG 的效率约为未修饰模板 dG 的 25%,并且 PrimPol 很容易从 dC:8-oxo-dG 碱基对(bps)延伸,效率比 dA:8-oxo-dG bps 高 2 倍。四氢呋喃(THF)碱基缺失模拟物将 PrimPol 活性降低至约 0.04%。总之,PrimPol 表现出与其他 TLS pol 相当的保真度,在锰离子赋予的激活程度上相当特殊,并且可以准确绕过 8-oxo-dG,这是与线粒体 DNA 复制和转录特别相关的 DNA 损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a04/4204878/18da39dac679/bi-2014-01024u_0001.jpg

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