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钼辅因子模型配合物中溶剂依赖性的吡喃蝶呤环化作用

Solvent-Dependent Pyranopterin Cyclization in Molybdenum Cofactor Model Complexes.

作者信息

Williams Benjamin R, Gisewhite Douglas, Kalinsky Anna, Esmail Alisha, Burgmayer Sharon J Nieter

机构信息

Department of Chemistry, Bryn Mawr College , Bryn Mawr, Pennsylvania 19010, United States.

出版信息

Inorg Chem. 2015 Sep 8;54(17):8214-22. doi: 10.1021/acs.inorgchem.5b00532. Epub 2015 May 5.

Abstract

The conserved pterin dithiolene ligand that coordinates molybdenum (Mo) in the cofactor (Moco) of mononuclear Mo enzymes can exist in both a tricyclic pyranopterin dithiolene form and as a bicyclic pterin-dithiolene form as observed in protein crystal structures of several bacterial molybdoenzymes. Interconversion between the tricyclic and bicyclic forms via pyran scission and cyclization has been hypothesized to play a role in the catalytic mechanism of Moco. Therefore, understanding the interconversion between the tricyclic and bicyclic forms, a type of ring-chain tautomerism, is an important aspect of study to understand its role in catalysis. In this study, equilibrium constants (K(eq)) as well as enthalpy, entropy, and free energy values are obtained for pyran ring tautomerism exhibited by two Moco model complexes, namely, (Et4N)[TpMo(O)(S2BMOPP)] (1) and (Et4N)[TpMo(O)(S2PEOPP)] (2), as a solvent-dependent equilibrium process. Keq values obtained from (1)H NMR data in seven deuterated solvents show a correlation between solvent polarity and tautomer form, where solvents with higher polarity parameters favor the pyran form.

摘要

在单核钼酶的辅因子(钼辅因子,Moco)中与钼(Mo)配位的保守蝶呤二硫纶配体,在几种细菌钼酶的蛋白质晶体结构中,既能以三环吡喃蝶呤二硫纶形式存在,也能以二环蝶呤 - 二硫纶形式存在。据推测,通过吡喃开环和环化实现的三环与二环形式之间的相互转化,在钼辅因子的催化机制中发挥作用。因此,理解三环与二环形式之间的相互转化(一种环链互变异构),是了解其在催化中作用的重要研究方面。在本研究中,作为一个溶剂依赖性平衡过程,获得了两种钼辅因子模型配合物,即四乙基铵盐[TpMo(O)(S2BMOPP)](1)和四乙基铵盐[TpMo(O)(S2PEOPP)](2)所表现出的吡喃环互变异构的平衡常数(Keq)以及焓、熵和自由能值。从七种氘代溶剂中的¹H NMR数据获得的Keq值表明,溶剂极性与互变异构形式之间存在相关性,其中极性参数较高的溶剂有利于吡喃形式。

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