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Environmental Effects on Guanine-Thymine Mispair Tautomerization Explored with Quantum Mechanical/Molecular Mechanical Free Energy Simulations

机译:用量子机械/分子机械自由能模拟探索鸟嘌呤 - 胸腺嘧啶错误分析的环境影响

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摘要

DNA bases can adopt energetically unfavorable tautomeric forms that enable the formation of Watson-Crick-like (WC-like) mispairs, which have been proposed to give rise to spontaneous mutations in DNA and misincorporation errors in DNA replication and translation. Previous NMR and computational studies have indicated that the population of WC-like guanine-thymine (G-T) mispairs depends on the environment, such as the local nucleic acid sequence and solvation. To investigate these environmental effects, herein G-T mispair tautomerization processes are studied computationally in aqueous solution, in A-form and B-form DNA duplexes, and within the active site of a DNA polymerase Ⅹ variant. The wobble G-T (wG-T), WC-like G-T*, and WC-like G*-T forms are considered, where * indicates the enol tautomer of the base. The minimum free energy paths for the tautomerization from the wG-T to the WC-like G-T* and from the WC-like G-T* to the WC-like G*-T are computed with mixed quantum mechanical/molecular mechanical (QM/MM) free energy simulations. The reaction free energies and free energy barriers are found to be significantly influenced by the environment. The wG-T→G-T* tautomerization is predicted to be endoergic in aqueous solution and the DNA duplexes but slightly exoergic in the polymerase, with Arg517 and AsnS13 providing electrostatic stabilization of G-T*. The G-T*→G*-T tautomerization is also predicted to be slightly more thermodynamically favorable in the polymerase relative to these DNA duplexes. These simulations are consistent with an experimentally driven kinetic misincorporation model suggesting that G-T mispair tautomerization occurs in the ajar polymerase conformation or concertedly with the transition from the ajar to the closed polymerase conformation. Furthermore, the order of the associated two proton transfer reactions is predicted to be different in the polymerase than in aqueous solution and the DNA duplexes. These studies highlight the impact of the environment on the thermodynamics, kinetics, and fundamental mechanisms of G-T mispair tautomerization, which plays a role in a wide range of biochemically important processes.
机译:DNA碱基可以采用能量不利的互变异构形式,可以形成沃森 - 克里克赖特(类似WC样)的错误,这已经提出了在DNA复制和翻译中产生DNA和MISINDorporation误差的自发突变。之前的NMR和计算研究表明,WC样鸟嘌呤 - 胸腺嘧啶(G-T)的群体取决于环境,例如局部核酸序列和溶剂化。为了研究这些环境效应,本文在水溶液中计算地研究了G-T错误的互变异化方法,以形式和B形式DNA双链体,以及DNA聚合酶β变体的活性位点。考虑WOBBL G-T(WG-T),WC样G-T *和WC样G * -T形式,其中*表示碱基的烯醇互变异构体。用混合量子机械/分子机械(QM / mm)计算从WG-T到WC样GT *和从WC样GT *与WC样GT *的互变异物的最小自由能路径。(QM / mm )自由能量模拟。发现无反应能量和自由能屏障受到环境的显着影响。预计WG-T→G-T *互变异化是在水溶液中的内胶剂和DNA双链体,但在聚合酶中略微突出,用ARG517和ASNS13提供G-T *的静电稳定化。还预测G-T *→G * -T互联化相对于这些DNA双链体,在聚合酶中有稍微热力地有利。这些模拟与实验驱动的动力学MISCLIND模型一致,表明G-T错误的互变异化在Ajar聚合酶兼容中发生或齐节地与从半腔到闭合聚合酶构象的过渡。此外,预测相关的两种质子转移反应的顺序在聚合酶中不同于在水溶液和DNA双链体中不同。这些研究突出了环境对G-T错误的热力学,动力学和基本机制的影响,这在广泛的生物化学上重要性过程中起着作用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第25期|11183-11191|共9页
  • 作者单位

    Department of Chemistry Yale University New Haven Connecticut 06520 United States;

    Department of Biochemistry Duke University Durham North Carolina 27710 United States;

    Department of Biochemistry Duke University Durham North Carolina 27710 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:46

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