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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Spectroscopic and computational studies of glutathionylcobalamin: Nature of Co-S bonding and comparison to Co-C bonding in coenzyme B_(12)
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Spectroscopic and computational studies of glutathionylcobalamin: Nature of Co-S bonding and comparison to Co-C bonding in coenzyme B_(12)

机译:谷胱甘肽钴胺素的光谱和计算研究:辅酶B_(12)中Co-S键的性质及其与Co-C键的比较

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摘要

Glutathionylcobalamin (GSCbl) is a unique, biologically relevant cobalamin featuring an axial Co-S bond that distinguishes it from the enzymatically active forms of vitamin B_(12), which possess axial Co-C bonds. GSCbl has been proposed to serve as an intermediate in cobalamin processing and, more recently, as a therapeutic for neurological disorders associated with oxidative stress. In this study, GSCbl and its close relative cysteinylcobalamin (CysCbl) were investigated using electronic absorption, circular dichroism, magnetic circular dichroism, and resonance Raman spectroscopies. The spectroscopic data were analyzed in the framework of density functional theory (DFT) and time-dependent DFT computations to generate experimentally validated electronic structure descriptions. Although the change in the upper axial ligand from an alkyl to a thiol group represents a major perturbation in terms of the size, basicity, and polarizability of the coordinating atom, our spectroscopic and computational results reveal striking similarities in electronic structure between methylcobalamin (MeCbl) and GSCbl, especially with regard to the σ donation from the alkyl/thiol ligand and the extent of mixing between the cobalt 3d and the ligand frontier orbitals. A detailed comparison of Co-C and Co-S bonding in MeCbl and GSCbl, respectively, is presented, and the implications of our results with respect to the proposed biological roles of GSCbl are discussed.
机译:谷胱甘肽钴胺素(GSCbl)是独特的,生物学上相关的钴胺素,其特征在于具有轴向Co-S键,从而使其与具有轴向Co-C键的维生素B_(12)的酶促活性形式区别开来。已经提出GSCb1用作钴胺素加工的中间体,并且最近用作与氧化应激有关的神经系统疾病的治疗剂。在这项研究中,使用电子吸收,圆二色性,磁圆二色​​性和共振拉曼光谱学研究了GSCbl及其近邻半胱氨酸钴胺素(CysCbl)。在密度泛函理论(DFT)和时变DFT计算的框架内分析了光谱数据,以生成经过实验验证的电子结构描述。尽管在轴向配体上从烷基到巯基的变化代表了配位原子的大小,碱性和极化性方面的主要扰动,但我们的光谱和计算结果表明,甲基钴胺素(MeCbl)的电子结构具有惊人的相似性尤其是关于烷基/硫醇配体的σ贡献以及钴3d与配体前沿轨道之间的混合程度。分别进行了MeCbl和GSCbl中Co-C和Co-S键的详细比较,并讨论了我们的研究结果对拟议的GSCbl生物学作用的影响。

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