Home > Publications database > The Crystal Structure of C176A Mutated [Fe]-Hydrogenase Suggests an Acyl-Iron Ligation in the Active Site Iron Complex |
Journal Article | PHPPUBDB-8575 |
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2009
Elsevier
Amsterdam [u.a.]
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Please use a persistent id in citations: doi:10.1016/j.febslet.2009.01.017
Abstract: [Fe]-hydrogenase is one of three types of enzymes known to activate H(2). Crystal structure analysis recently revealed that its active site iron is ligated square-pyramidally by Cys176-sulfur, two CO, an "unknown" ligand and the sp(2)-hybridized nitrogen of a unique iron-guanylylpyridinol-cofactor. We report here on the structure of the C176A mutated enzyme crystallized in the presence of dithiothreitol (DTT). It suggests an iron center octahedrally coordinated by one DTT-sulfur and one DTT-oxygen, two CO, the 2-pyridinol's nitrogen and the 2-pyridinol's 6-formylmethyl group in an acyl-iron ligation. This result led to a re-interpretation of the iron ligation in the wild-type.
Keyword(s): Adenine: metabolism (MeSH) ; Catalytic Domain (MeSH) ; Crystallography, X-Ray (MeSH) ; Cytosine: metabolism (MeSH) ; Holoenzymes: chemistry (MeSH) ; Holoenzymes: genetics (MeSH) ; Holoenzymes: metabolism (MeSH) ; Hydrogenase: chemistry (MeSH) ; Hydrogenase: genetics (MeSH) ; Hydrogenase: metabolism (MeSH) ; Iron: chemistry (MeSH) ; Iron: metabolism (MeSH) ; Iron-Sulfur Proteins: chemistry (MeSH) ; Iron-Sulfur Proteins: genetics (MeSH) ; Iron-Sulfur Proteins: metabolism (MeSH) ; Methanococcales: enzymology (MeSH) ; Methanococcales: genetics (MeSH) ; Mutation: genetics (MeSH) ; Protein Structure, Quaternary (MeSH) ; Holoenzymes ; Iron-Sulfur Proteins ; Cytosine ; Adenine ; Iron ; iron hydrogenase ; Hydrogenase
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