[Fe]-Hydrogenase, Cofactor Biosynthesis and Engineering.

Francisco J Arriaza-Gallardo, Yu-Cong Zheng, Manuel Gehl, Shunsuke Nomura, J Pedro Fernandes-Queiroz, Seigo Shima

Journal: Chembiochem : a European journal of chemical biology 2023;24(20):e202300330

PMID: 37671838

Abstract

[Fe]-hydrogenase catalyzes the heterolytic cleavage of H and reversible hydride transfer to methenyl-tetrahydromethanopterin. The iron-guanylylpyridinol (FeGP) cofactor is the prosthetic group of this enzyme, in which mononuclear Fe(II) is ligated with a pyridinol and two CO ligands. The pyridinol ligand fixes the iron by an acyl carbon and a pyridinol nitrogen. Biosynthetic proteins for this cofactor are encoded in the hmd co-occurring (hcg) genes. The function of HcgB, HcgC, HcgD, HcgE, and HcgF was studied by using structure-to-function analysis, which is based on the crystal structure of the proteins and subsequent enzyme assays. Recently, we reported the catalytic properties of HcgA and HcgG, novel radical S-adenosyl methionine enzymes, by using an in vitro biosynthesis assay. Here, we review the properties of [Fe]-hydrogenase and the FeGP cofactor, and the biosynthesis of the FeGP cofactor. Finally, we discuss the expected engineering of [Fe]-hydrogenase and the FeGP cofactor.

© 2023 The Authors. ChemBioChem published by Wiley-VCH GmbH.

Address: Max Planck Institute for Terrestrial Microbiology, Karl-von-Frisch-Straße 10, 35043, Marburg, Germany.

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