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Crystal structure of HydF scaffold protein provides insights into [FeFe]-hydrogenase maturation
Authors:Cendron Laura  Berto Paola  D'Adamo Sarah  Vallese Francesca  Govoni Chiara  Posewitz Matthew C  Giacometti Giorgio M  Costantini Paola  Zanotti Giuseppe
Institution:Department of Biological Chemistry, University of Padua, Padua, Italy.
Abstract:FeFe]-hydrogenases catalyze the reversible production of H2 in some bacteria and unicellular eukaryotes. These enzymes require ancillary proteins to assemble the unique active site H-cluster, a complex structure composed of a 2Fe center bridged to a 4Fe-4S] cubane. The first crystal structure of a key factor in the maturation process, HydF, has been determined at 3 ? resolution. The protein monomer present in the asymmetric unit of the crystal comprises three domains: a GTP-binding domain, a dimerization domain, and a metal cluster-binding domain, all characterized by similar folding motifs. Two monomers dimerize, giving rise to a stable dimer, held together mainly by the formation of a continuous β-sheet comprising eight β-strands from two monomers. Moreover, in the structure presented, two dimers aggregate to form a supramolecular organization that represents an inactivated form of the HydF maturase. The crystal structure of the latter furnishes several clues about the events necessary for cluster generation/transfer and provides an excellent model to begin elucidating the structure/function of HydF in FeFe]-hydrogenase maturation.
Keywords:Crystallography  GTPase  Hydrogenase  Iron-Sulfur Protein  Protein Structure  H-cluster  HydF  Hydrogen Production  Hydrogenase Maturase  Iron-Sulfur Cluster
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