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Antiferromagnetically coupled [Fe8S9] cluster catalyzed acetylene reduction in a nitrogenase-like enzyme DCCPCh: Insights from QM/MM calculations
Stockholm University, Faculty of Science, Department of Organic Chemistry.
Number of Authors: 42021 (English)In: Journal of Catalysis, ISSN 0021-9517, E-ISSN 1090-2694, Vol. 398, p. 67-75Article in journal (Refereed) Published
Abstract [en]

QM/MM calculations have been used to elucidate the reaction mechanism of the reduction of acetylene to ethylene catalyzed by a nitrogenase-like enzyme DCCPCh with an unusual [Fe8S9] double-cubane cluster. Various plausible reaction pathways, involving different oxidation states and protonation states of the iron-sulfur cluster, have been analyzed to find the most favorable one. The acetylene substrate bridges to the [Fe8S8] cluster via its triple bond in a μ-(bis-η2) coordination mode. After a proton-coupled electron transfer reduction of the reactant complex, the acetylene reduction may be described to proceed via a special “double-electron transfer induced proton transfer” mechanism, deduced from the principal interacting orbital analysis. The anti-ferromagnetically coupled [Fe8S8] cluster delivers a pair of α- and β-electrons to the substrate, concertedly but asynchronously with a proton transfer mediated by the second-shell Lys147 residue to one of the acetylene carbon atoms. Subsequently, the second proton-coupled electron transfer proceeds, followed by protonation of the substrate to afford the ethylene product. During the two-electron reaction, the oxidation states of the [Fe8S8] cluster cycle from [FeII6FeIII2], to [FeII7FeIII], to [FeII5FeIII3], and back to [FeII6FeIII2].

Place, publisher, year, edition, pages
2021. Vol. 398, p. 67-75
Keywords [en]
FeS cluster, Reaction mechanism, Enzyme catalysis, Proton-coupled electron transfer
National Category
Chemical Sciences
Identifiers
URN: urn:nbn:se:su:diva-195752DOI: 10.1016/j.jcat.2021.04.009ISI: 000658705100006OAI: oai:DiVA.org:su-195752DiVA, id: diva2:1588068
Available from: 2021-08-26 Created: 2021-08-26 Last updated: 2022-02-25Bibliographically approved

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Siegbahn, Per E. M.

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