Double-Cubane [8Fe9S] Clusters: A Novel Nitrogenase-Related Cofactor in Biology

Journal article


Publication Details


Author list: Jeoung J.H., Martins B.M., Dobbek H.

Journal: ChemBioChem

Publication year: 2020

Volume number: 21

Issue number: 12

Pages: 1710-1716

Publisher: Wiley-VCH Verlag

ISSN: 1439-4227

eISSN: 1439-7633

DOI: 10.1002/cbic.202000016

URL: https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85082538562&origin=inward

Languages: English-Great Britain


Abstract


Three different types of electron-transferring metallo-ATPases are able to couple ATP hydrolysis to the reduction of low-potential metal sites, thereby energizing an electron. Besides the Fe-protein known from nitrogenase and homologous enzymes, two other kinds of ATPase with different scaffolds and cofactors are used to achieve a unidirectional, energetic, uphill electron transfer to either reduce inactive Co-corrinoid-containing proteins (RACE-type activators) or a second iron-sulfur cluster-containing enzyme of a unique radical enzymes family (archerases). We have found a new cofactor in the latter enzyme family, that is, a double-cubane cluster with two [4Fe4S] subclusters bridged by a sulfido ligand. An enzyme containing this cofactor catalyzes the ATP-dependent reduction of small molecules, including acetylene. Thus, enzymes containing the double-cubane cofactor are analogous in function and share some structural features with nitrogenases.



Authors/Editors

Last updated on 2022-28-09 at 19:49