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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >The role of the halogen bond in iodothyronine deiodinase: Dependence on chalcogen substitution in naphthyl-based mimetics
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The role of the halogen bond in iodothyronine deiodinase: Dependence on chalcogen substitution in naphthyl-based mimetics

机译:卤素键在碘罗朗脱碘酶中的作用:依赖基于萘基的模拟物中的硫致原取代

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摘要

The effects on the activity of thyroxine (T4) due to the chalcogen replacement in a series of peri-substituted naphthalenes mimicking the catalytic function of deiodinase enzymes are computationally examined using density functional theory. In particular, T4 inner-ring deiodination pathways assisted by naphthyl-based models bearing two tellurols and a tellurol-thiol pair in peri-position are explored and compared with the analogous energy profiles for the naphthalene mimic having two selenols. The presence of a halogen bond (XB) in the intermediate formed in the first step and involved in the rate-determining step of the reaction is assumed to facilitate the process increasing the rate of the reaction. The rate-determining step calculated energy barrier heights allow rationalizing the experimentally observed superior catalytic activity of tellurium containing mimics. Charge displacement analysis is used to ascertain the presence and the role of the electron density charge transfer occurring in the rate-determining step of the reaction, suggesting the incipient formation or presence of a XB interaction. (c) 2019 Wiley Periodicals, Inc.
机译:由于拟给脱碘酶的催化功能的一系列Peri-取代的萘替替萘替代的甲状腺素(T4)的作用是使用密度函数理论计算脱碘酶的催化功能的催化功能。特别地,探索由载萘基的模型辅助的T4内环脱碘途径,并与具有两个Selenols的萘模拟的类似能量曲线进行比较。假设在第一步中形成的中间体中的卤素键(Xb)存在并参与反应的速率确定步骤,以促进该过程增加反应速率。速率确定步骤计算能量阻隔高度允许合理化通过实验观察到的含碲的催化活性的模拟物。电荷位移分析用于确定在反应的速率确定步骤中发生的电子密度电荷转移的存在和作用,表明初始形成或存在XB相互作用。 (c)2019 Wiley期刊,Inc。

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