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DNA聚合酶β中核苷酸掺入的机制。

Mechanism of nucleotide incorporation in DNA polymerase beta.

作者信息

Radhakrishnan Ravi

机构信息

Department of Bioengineering, University of Pennsylvania, 120 Hayden Hall, Philadelphia, USA.

出版信息

Biochem Biophys Res Commun. 2006 Sep 1;347(3):626-33. doi: 10.1016/j.bbrc.2006.06.142. Epub 2006 Jul 5.

Abstract

DNA polymerases play a central role in the mechanisms of DNA replication and repair. Here, we report mechanisms of the beta-polymerase catalyzed phosphoryl transfer reactions corresponding to correct and incorrect nucleotide incorporations in the DNA. Based on energy minimizations, molecular dynamics simulations, and free energy calculations of solvated ternary complexes of pol beta and by employing a mixed quantum mechanics molecular mechanics Hamiltonian, we have uncovered the identities of transient intermediates in the phosphoryl transfer pathways. Our study has revealed that an intriguing Grotthuss hopping mechanism of proton transfer involving water and three conserved aspartate residues in pol beta's active site mediates the phosphoryl transfer in the correct as well as misincorporation of nucleotides. The significance of this catalytic step in serving as a kinetic check point of polymerase fidelity may be unique to DNA polymerase beta, and is discussed in relation to other known mechanisms of DNA polymerases.

摘要

DNA聚合酶在DNA复制和修复机制中起着核心作用。在此,我们报告了β-聚合酶催化的磷酸转移反应机制,该反应对应于DNA中正确和错误的核苷酸掺入。基于能量最小化、分子动力学模拟以及pol β溶剂化三元复合物的自由能计算,并采用混合量子力学分子力学哈密顿量,我们揭示了磷酸转移途径中瞬态中间体的身份。我们的研究表明,一种有趣的质子转移Grotthuss跳跃机制涉及pol β活性位点中的水和三个保守天冬氨酸残基,介导了核苷酸正确掺入以及错配掺入过程中的磷酸转移。这一催化步骤作为聚合酶保真度动力学检查点的重要性可能是DNA聚合酶β所特有的,并将结合DNA聚合酶的其他已知机制进行讨论。

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