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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Active Site, Catalytic Cycle, and lodination Reactions of Vanadium lodoperoxidase: A Computational Study
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Active Site, Catalytic Cycle, and lodination Reactions of Vanadium lodoperoxidase: A Computational Study

机译:钒过氧化物过氧化物酶的活性位点,催化循环和螯合反应的计算研究

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摘要

A combined computational study using molecular surfaces and Poisson-Boltzmann electrostatic potentials for proteins and quantum calculations on complexes representing the vanadate cofactor throughout the catalytic cycle is employed to study the activity of vanadium iodoperoxidase (VIPO) from alga Laminaria digltata. A model structure of VIPO is compared with available crystal structures of chloroperoxidases (VCIPOs) and bromoperoxidases (VBrPOs) focusing on properties of the active site that concern halogen specificity. It is found that VIPO displays distinctive features regarding electrostatic potentials at the site cavity and the local topography of the cavity entrance. Quantum calculations on cofactor stages throughout the catalytic cycle reveal that, while steps involving binding of hydrogen peroxide and halide oxidization agree with available data on VBrPO, final formation and subsequent release of hypohalous acid could follow a different pathway consisting of His476-assisted protonation of bonded hypoiodite and further displacement by a water molecule. Ab initio free energies of reaction computed to explore iodination of organic substrates predict strongly exoergonic reactions with HOI, whereas other possible iodination reagents give thermodynamically disfavored reactions.
机译:利用分子表面和Poisson-Boltzmann蛋白质静电势的复合计算研究以及在整个催化循环中代表钒酸盐辅因子的复合物的量子计算,用于研究藻类海带中的碘碘过氧化物酶(VIPO)的活性。将VIPO的模型结构与氯过氧化物酶(VCIPO)和溴过氧化物酶(VBrPO)的可用晶体结构进行了比较,重点关注与卤素特异性有关的活性位点的特性。发现VIPO显示出与现场空腔处的静电势和空腔入口的局部形貌有关的独特特征。在整个催化循环中,辅因子阶段的量子计算表明,尽管涉及过氧化氢和卤化物氧化结合的步骤与VBrPO的现有数据相符,但次卤酸的最终形成和随后的释放可能遵循由His476辅助键合质子化的不同途径次碘酸盐和水分子的进一步置换。计算得出的用于探索有机底物碘化反应的从头算自由能预测与HOI的强烈外能反应,而其他可能的碘化试剂会产生热力学不利的反应。

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