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Preferred WMSA catalytic mechanism of the nucleotidyl transfer reaction in human DNA polymerase kappa elucidates error-free bypass of a bulky DNA lesion

机译:人类DNA聚合酶kappa中核苷酸转移反应的优选WMSA催化机制阐明了无误的大体积DNA损伤旁路

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摘要

Human DNA Pol κ is a polymerase enzyme, specialized for near error-free bypass of certain bulky chemical lesions to DNA that are derived from environmental carcinogens present in tobacco smoke, automobile exhaust and cooked food. By employing ab initio QM/MM–MD (Quantum Mechanics/Molecular Mechanics–Molecular Dynamics) simulations with umbrella sampling, we have determined the entire free energy profile of the nucleotidyl transfer reaction catalyzed by Pol κ and provided detailed mechanistic insights. Our results show that a variant of the Water Mediated and Substrate Assisted (WMSA) mechanism that we previously deduced for Dpo4 and T7 DNA polymerases is preferred for Pol κ as well, suggesting its broad applicability. The hydrogen on the 3′-OH primer terminus is transferred through crystal and solvent waters to the γ-phosphate of the dNTP, followed by the associative nucleotidyl transfer reaction; this is facilitated by a proton transfer from the γ-phosphate to the α,β-bridging oxygen as pyrophosphate leaves, to neutralize the evolving negative charge. MD simulations show that the near error-free incorporation of dCTP opposite the major benzo[a]pyrene—derived dG lesion is compatible with the WMSA mechanism, allowing for an essentially undisturbed pentacovalent phosphorane transition state, and explaining the bypass of this lesion with little mutation by Pol κ.
机译:人类DNA Polκ是一种聚合酶,专门用于将某些庞大的化学损伤几乎无错误地绕过DNA,这些DNA来自烟草烟雾,汽车尾气和熟食中存在的环境致癌物。通过使用从头开始的QM / MM-MD(量子力学/分子力学-分子动力学)模拟和伞式采样,我们已经确定了Polκ催化的核苷酸转移反应的整个自由能谱,并提供了详细的机理见解。我们的结果表明,我们先前推论的Dpo4和T7 DNA聚合酶的水介体和底物辅助(WMSA)机制的变体也被Polκ首选,表明其广泛的适用性。 3'-OH底漆末端上的氢通过结晶水和溶剂水转移至dNTP的γ-磷酸盐,然后进行缔合的核苷酸转移反应;当焦磷酸盐离开时,质子从γ-磷酸盐转移到α,β-桥接氧的质子转移促进了中和不断发展的负电荷。 MD模拟表明,与主要苯并[a] py衍生的dG病变相对的dCTP几乎无错误地掺入与WMSA机制兼容,从而使五价phosphor膦环烷过渡态基本不受干扰,并且几乎可以解释该病变的旁路Polκ突变。

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