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RB69pol 保真度突变体引起的突变率变化可以从它们的动力学行为和晶体结构来合理推断。

Variation in mutation rates caused by RB69pol fidelity mutants can be rationalized on the basis of their kinetic behavior and crystal structures.

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, 333 Cedar Street, New Haven, CT 06520, USA.

出版信息

J Mol Biol. 2011 Mar 4;406(4):558-70. doi: 10.1016/j.jmb.2010.12.033. Epub 2011 Jan 7.

Abstract

We have previously observed that stepwise replacement of amino acid residues in the nascent base-pair binding pocket of RB69 DNA polymerase (RB69pol) with Ala or Gly expanded the space in this pocket, resulting in a progressive increase in misincorporation. However, in vivo results with similar RB69pol nascent base-pair binding pocket mutants showed that mutation rates, as determined by the T4 phage rI forward assay and rII reversion assay, were significantly lower for the RB69pol S565G/Y567A double mutant than for the Y567A single mutant, the opposite of what we would have predicted. To investigate the reasons for this unexpected result, we have determined the pre-steady-state kinetic parameters and crystal structures of relevant ternary complexes. We found that the S565G/Y567A mutant generally had greater base selectivity than the Y567A mutant and that the kinetic parameters for dNMP insertion, excision of the 3'-terminal nucleotide residue, and primer extension beyond a mispair differed not only between these two mutants but also between the two highly mutable sequences in the T4 rI complementary strand. Comparison of the crystal structures of these two mutants with correct and incorrect incoming dNTPs provides insight into the unexpected increase in the fidelity of the S565G/Y567A double mutant. Taken together, the kinetic and structural results provide a basis for integrating and interpreting in vivo and in vitro observations.

摘要

我们之前观察到,在 RB69 DNA 聚合酶(RB69pol)的新生碱基对结合口袋中逐步替换氨基酸残基为 Ala 或 Gly,会扩大该口袋的空间,导致错误掺入逐渐增加。然而,具有类似 RB69pol 新生碱基对结合口袋突变的体内结果表明,T4 噬菌体 rI 正向测定和 rII 回复测定确定的突变率,对于 RB69pol S565G/Y567A 双突变体明显低于 Y567A 单突变体,这与我们的预期相反。为了研究这个意外结果的原因,我们已经确定了相关三元复合物的预稳态动力学参数和晶体结构。我们发现,S565G/Y567A 突变体通常比 Y567A 突变体具有更大的碱基选择性,并且 dNMP 插入、3'-末端核苷酸残基的切除以及在错配后延伸的动力学参数不仅在这两个突变体之间有所不同,而且在 T4 rI 互补链中的两个高度易变序列之间也有所不同。比较这两个突变体与正确和错误进入的 dNTP 的晶体结构,为 S565G/Y567A 双突变体保真度的意外增加提供了深入了解。总之,动力学和结构结果为整合和解释体内和体外观察提供了基础。

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