The direct role of selenocysteine in [NiFeSe] hydrogenase maturation and catalysis.

Marta C Marques, Cristina Tapia, Oscar Gutiérrez-Sanz, Ana Raquel Ramos, Kimberly L Keller, Judy D Wall, Antonio L De Lacey, Pedro M Matias, Inês A C Pereira

Journal: Nature chemical biology 2017;13(5):544-550

PMID: 28319099

Abstract

Hydrogenases are highly active enzymes for hydrogen production and oxidation. [NiFeSe] hydrogenases, in which selenocysteine is a ligand to the active site Ni, have high catalytic activity and a bias for H production. In contrast to [NiFe] hydrogenases, they display reduced H inhibition and are rapidly reactivated after contact with oxygen. Here we report an expression system for production of recombinant [NiFeSe] hydrogenase from Desulfovibrio vulgaris Hildenborough and study of a selenocysteine-to-cysteine variant (Sec489Cys) in which, for the first time, a [NiFeSe] hydrogenase was converted to a [NiFe] type. This modification led to severely reduced Ni incorporation, revealing the direct involvement of this residue in the maturation process. The Ni-depleted protein could be partly reconstituted to generate an enzyme showing much lower activity and inactive states characteristic of [NiFe] hydrogenases. The Ni-Sec489Cys variant shows that selenium has a crucial role in protection against oxidative damage and the high catalytic activities of the [NiFeSe] hydrogenases.

Address: Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras, Portugal.; Instituto de Catálisis y Petroleoquímica (CSIC), Madrid, Spain.; Biochemistry Department, University of Missouri, Columbia, Missouri, USA.; Ecosystems and Networks Integrated with Genes and Molecular Assemblies (ENIGMA), Berkeley, California, USA.; Instituto de Biologia Experimental e Tecnológica (iBET), Oeiras, Portugal.
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