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首页> 外文期刊>Journal of Molecular Biology >Identification of critical residues for the tight binding of both correct and incorrect nucleotides to human DNA polymerase lambda.
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Identification of critical residues for the tight binding of both correct and incorrect nucleotides to human DNA polymerase lambda.

机译:鉴定关键残基,以将正确和不正确的核苷酸与人DNA聚合酶lambda紧密结合。

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摘要

DNA polymerase lambda (Pol lambda) is a novel X-family DNA polymerase that shares 34% sequence identity with DNA polymerase beta. Pre-steady-state kinetic studies have shown that the Pol lambda-DNA complex binds both correct and incorrect nucleotides 130-fold tighter, on average, than the DNA polymerase beta-DNA complex, although the base substitution fidelity of both polymerases is 10(-)(4) to 10(-5). To better understand Pol lambda's tight nucleotide binding affinity, we created single-substitution and double-substitution mutants of Pol lambda to disrupt the interactions between active-site residues and an incoming nucleotide or a template base. Single-turnover kinetic assays showed that Pol lambda binds to an incoming nucleotide via cooperative interactions with active-site residues (R386, R420, K422, Y505, F506, A510, and R514). Disrupting protein interactions with an incoming correct or incorrect nucleotide impacted binding to each of the common structural moieties in the following order: triphosphatebase>ribose. In addition, the loss of Watson-Crick hydrogen bonding between the nucleotide and the template base led to a moderate increase in K(d). The fidelity of Pol lambda was maintained predominantly by a single residue, R517, which has minor groove interactions with the DNA template.
机译:DNA聚合酶lambda(Pol lambda)是一种新颖的X系列DNA聚合酶,与DNA聚合酶beta共享34%的序列同一性。稳态前的动力学研究表明,尽管两种聚合酶的碱基取代保真度为10,但Pol lambda-DNA复合物结合的正确和错误核苷酸平均比DNA聚合酶β-DNA复合物紧密130倍。 -)(4)至10(-5)。为了更好地了解Pol lambda的紧密核苷酸结合亲和力,我们创建了Pol lambda的单取代和双取代突变体,以破坏活性位点残基与传入核苷酸或模板碱基之间的相互作用。单周转动力学分析表明,Pol lambda通过与活性位点残基(R386,R420,K422,Y505,F506,A510和R514)的协同相互作用与输入核苷酸结合。具有传入的正确或不正确核苷酸的破坏的蛋白质相互作用以下列顺序影响了与每个常见结构部分的结合:三磷酸酯碱基>核糖。另外,核苷酸和模板碱基之间的沃森-克里克氢键的丧失导致K(d)的适度增加。 Polλ的保真度主要由单个残基R517保持,该残基与DNA模板的凹槽相互作用较小。

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