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一电子氧化态的甲钴胺素辅因子的电子结构:自旋密度分布和赝 Jahn-Teller 效应。

Electronic structure of one-electron-oxidized form of the methylcobalamin cofactor: spin density distribution and pseudo-Jahn-teller effect.

机构信息

Department of Chemistry, University of Louisville, Louisville, Kentucky 40292, United States.

出版信息

Inorg Chem. 2013 Feb 18;52(4):1762-71. doi: 10.1021/ic3013443. Epub 2013 Jan 29.

DOI:10.1021/ic3013443
PMID:23360322
Abstract

The electronic and structural properties of the one-electron-oxidized form of methylcobalamin (MeCbl) cofactor have been investigated using density functional theory (DFT) and CASSCF/MC-XQDPT2 calculations. We applied two types of functionals (hybrid and GGA) which produced quite different results in terms of spin density profiles: the B3LYP description was consistent with Co(III) and the π-cation corrin radical while the BP86 result was more in line with the Co(IV) oxidation state. A closer inspection of both outcomes indicates that the oxidized species have a mixed π-cation corrin radical and Co(III)/Co(IV) character. This mixed character was further supported by high-level ab initio CASSCF/MC-XQDPT2 calculations, which reveal the strong mixing of the electronic states due to nondynamical correlation effects. The near degeneracy, which takes place between the ground and first excited state, was consistent with the presence of a pseudo-Jahn-Teller (pJT) effect in the oxidized form of MeCbl. In addition, the DFT-based investigation of the structurally related porphyrin complexes gives a description consistent with corrin-based analogues and reveals that the corrin species have more Co(IV) character. The most important finding of the present study, regardless of the type of functional used, was the significant lowering of dissociation energy (∼35%), which might be due to the partial depopulation of the Co-C σ orbital upon removal of an electron.

摘要

采用密度泛函理论(DFT)和 CASSCF/MC-XQDPT2 计算方法研究了一电子氧化的甲钴胺(MeCbl)辅因子的电子和结构性质。我们应用了两种类型的泛函(混合和 GGA),它们在自旋密度分布方面产生了非常不同的结果:B3LYP 描述与 Co(III)和π-阳离子钴胺自由基一致,而 BP86 的结果更符合 Co(IV)氧化态。对这两种结果的进一步检查表明,氧化物种具有混合的π-阳离子钴胺自由基和 Co(III)/Co(IV)特征。这种混合特征得到了高精度从头算 CASSCF/MC-XQDPT2 计算的进一步支持,该计算揭示了由于非动力学相关效应导致电子态的强烈混合。基态和第一激发态之间的近简并与 MeCbl 氧化形式中存在准 Jahn-Teller(pJT)效应一致。此外,基于 DFT 的对结构相关卟啉配合物的研究给出了与基于钴胺的类似物一致的描述,并表明该钴胺物种具有更多的 Co(IV)特征。本研究最重要的发现是,无论使用哪种类型的泛函,离解能都显著降低(约 35%),这可能是由于电子去除后 Co-C σ 轨道的部分去占据。

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引用本文的文献

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