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Nucleotide binding interactions modulate dNTP selectivity and facilitate 8-oxo-dGTP incorporation by DNA polymerase lambda

机译:核苷酸结合相互作用调节dNTP选择性并促进DNA聚合酶lambda引入8-氧代-dGTP

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摘要

8-Oxo-7,8,-dihydro-2'-deoxyguanosine triphosphate (8-oxo-dGTP) is a major product of oxidative damage in the nucleotide pool. It is capable of mispairing with adenosine (dA), resulting in futile, mutagenic cycles of base excision repair. Therefore, it is critical that DNA polymerases discriminate against 8-oxo-dGTP at the insertion step. Because of its roles in oxidative DNA damage repair and non-homologous end joining, DNA polymerase lambda (Pol lambda) may frequently encounter 8-oxo-dGTP. Here, we have studied the mechanisms of 8-oxo-dGMP incorporation and discrimination by Pol lambda. We have solved high resolution crystal structures showing how Pol lambda accommodates 8-oxo-dGTP in its active site. The structures indicate that when mispaired with dA, the oxidized nucleotide assumes the mutagenic syn-conformation, and is stabilized by multiple interactions. Steady-state kinetics reveal that two residues lining the dNTP binding pocket, Ala(510) and Asn(513), play differential roles in dNTP selectivity. Specifically, Ala(510) and Asn(513) facilitate incorporation of 8-oxo-dGMP opposite dA and dC, respectively. These residues also modulate the balance between purine and pyrimidine incorporation. Our results shed light on the mechanisms controlling 8-oxo-dGMP incorporation in Pol lambda and on the importance of interactions with the incoming dNTP to determine selectivity in family X DNA polymerases.
机译:8-Oxo-7,8,-dihydro-2'-deoxyguanosine triphosphate(8-oxo-dGTP)是核苷酸库中氧化损伤的主要产物。它能够与腺苷(dA)错配,从而导致碱基切除修复的徒劳的诱变周期。因此,至关重要的是,DNA聚合酶在插入步骤中必须与8-oxo-dGTP相区别。由于其在氧化DNA损伤修复和非同源末端连接中的作用,DNA聚合酶lambda(Pol lambda)可能经常遇到8-oxo-dGTP。在这里,我们研究了Pol Lambda引入8-氧代-dGMP的机制和区分机制。我们已经解决了高分辨率晶体结构,显示了Pol lambda如何在其活动位点容纳8-oxo-dGTP。结构表明,当与dA错误配对时,被氧化的核苷酸具有诱变的同构构象,并通过多种相互作用而稳定。稳态动力学表明,衬在dNTP结合袋中的两个残基Ala(510)和Asn(513)在dNTP选择性中起着不同的作用。具体地说,Ala(510)和Asn(513)分别促进了与dA和dC相反的8-oxo-dGMP的掺入。这些残基也调节嘌呤和嘧啶掺入之间的平衡。我们的研究结果揭示了控制Polλ中8-oxo-dGMP掺入的机制,以及与传入dNTP相互作用以确定X族DNA聚合酶选择性的重要性。

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