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The Mössbauer Parameters of the Proximal Clusterof Membrane-Bound Hydrogenase Revisited: A Density Functional TheoryStudy

机译:近邻簇的Mössbauer参数膜结合氢化酶的研究:密度泛函理论研究

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摘要

An unprecedented [4Fe-3S] cluster proximal to the regular [NiFe] active site has recently been found to be responsible for the ability of membrane-bound hydrogenases (MBHs) to oxidize dihydrogen in the presence of ambient levels of oxygen. Starting from proximal cluster models of a recent DFT study on the redox-dependent structural transformation of the [4Fe-3S] cluster, 57Fe Mössbauer parameters (electric field gradients, isomer shifts, and nuclear hyperfine couplings) were calculated using DFT. Our results revise the previously reported correspondence of Mössbauer signals and iron centers in the [4Fe-3S]3+ reduced-state proximal cluster. Similar conflicting assignments are also resolved for the [4Fe-3S]5+ superoxidized state with particular regard to spin-coupling in the broken-symmetry DFT calculations. Calculated 57Fe hyperfine coupling (HFC) tensors expose discrepancies in the experimental set of HFC tensors and substantiate the need for additional experimental work on the magnetic properties of the MBH proximal cluster in its reduced andsuperoxidized redox states.
机译:最近发现,在规则的[NiFe]活性位点附近出现了前所未有的[4Fe-3S]簇,该簇负责膜结合的氢酶(MBH)在环境水平的氧气存在下氧化二氢的能力。从最近的DFT研究[4Fe-3S]簇的氧化还原依赖性结构转变的近端簇模型开始, 57 FeMössbauer参数(电场梯度,异构体位移和核超精细偶合)使用DFT计算。我们的结果修改了先前报道的[4Fe-3S] 3 + 还原态近端簇中Mössbauer信号与铁中心的对应关系。对于[4Fe-3S] 5 + 超氧化态,也解决了相似的冲突分配,特别是在对称对称DFT计算中涉及自旋耦合。计算的 57 Fe超细耦合(HFC)张量揭示了HFC张量实验集中的差异,并证实了需要对MBH近端团簇的磁特性进行进一步的实验研究,以降低其分布。超氧化还原状态。

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