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具有可变低位轴向配位的钴胺素物种的光谱和计算研究:对I类钴胺素依赖性异构酶激活Co-C键机制的启示

Spectroscopic and computational studies of cobalamin species with variable lower axial ligation: implications for the mechanism of Co-C bond activation by class I cobalamin-dependent isomerases.

作者信息

Conrad Karen S, Jordan Christopher D, Brown Kenneth L, Brunold Thomas C

机构信息

†Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States.

§Department of Chemistry and Biochemistry, Ohio University, Athens, Ohio 45701, United States.

出版信息

Inorg Chem. 2015 Apr 20;54(8):3736-47. doi: 10.1021/ic502665x. Epub 2015 Apr 3.

DOI:10.1021/ic502665x
PMID:25839944
Abstract

5'-deoxyadenosylcobalamin (coenzyme B12, AdoCbl) serves as the cofactor for several enzymes that play important roles in fermentation and catabolism. All of these enzymes initiate catalysis by promoting homolytic cleavage of the cofactor's Co-C bond in response to substrate binding to their active sites. Despite considerable research efforts, the role of the lower axial ligand in facilitating Co-C bond homolysis remains incompletely understood. In the present study, we characterized several derivatives of AdoCbl and its one-electron reduced form, Co(II)Cbl, by using electronic absorption and magnetic circular dichroism spectroscopies. To complement our experimental data, we performed computations on these species, as well as additional Co(II)Cbl analogues. The geometries of all species investigated were optimized using a quantum mechanics/molecular mechanics method, and the optimized geometries were used to compute absorption spectra with time-dependent density functional theory. Collectively, our results indicate that a reduction in the basicity of the lower axial ligand causes changes to the cofactor's electronic structure in the Co(II) state that replicate the effects seen upon binding of Co(II)Cbl to Class I isomerases, which replace the lower axial dimethylbenzimidazole ligand of AdoCbl with a protein-derived histidine (His) residue. Such a reduction of the basicity of the His ligand in the enzyme active site may be achieved through proton uptake by the catalytic triad of conserved residues, DXHXGXK, during Co-C bond homolysis.

摘要

5'-脱氧腺苷钴胺素(辅酶B12,AdoCbl)作为几种在发酵和分解代谢中起重要作用的酶的辅因子。所有这些酶通过响应底物与它们活性位点的结合促进辅因子的Co-C键的均裂来启动催化作用。尽管进行了大量的研究工作,但关于较低轴向配体在促进Co-C键均裂中的作用仍未完全理解。在本研究中,我们通过使用电子吸收光谱和磁圆二色光谱对AdoCbl及其单电子还原形式Co(II)Cbl的几种衍生物进行了表征。为了补充我们的实验数据,我们对这些物种以及额外的Co(II)Cbl类似物进行了计算。使用量子力学/分子力学方法对所有研究物种的几何结构进行了优化,并使用含时密度泛函理论对优化后的几何结构计算吸收光谱。总体而言,我们的结果表明,较低轴向配体碱性的降低会导致Co(II)状态下辅因子电子结构的变化,这复制了Co(II)Cbl与I类异构酶结合时所观察到的效应,I类异构酶用蛋白质衍生的组氨酸(His)残基取代了AdoCbl的较低轴向二甲基苯并咪唑配体。在Co-C键均裂过程中,酶活性位点中His配体碱性的这种降低可能是通过保守残基DXHXGXK的催化三联体吸收质子来实现的。

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