TY - JOUR
T1 - Insight into the protein and solvent contributions to the reduction potentials of [4Fe-4S]2+/+ clusters
T2 - Crystal structures of the Allochromatium vinosum ferredoxin variants C57A and V13G and the homologous Escherichia coli ferredoxin
AU - Saridakis, Emmanuel
AU - Giastas, Petros
AU - Efthymiou, Georgios
AU - Thoma, Vladimiros
AU - Moulis, Jean Marc
AU - Kyritsis, Panayotis
AU - Mavridis, Irene M.
N1 - Funding Information:
Acknowledgments We thank NCSR Demokritos for a postgraduate fellowship (P.G.) and EMBL Hamburg for financial support from Research Infrastructure Action under the Structuring the European Research Area Programme RII3-CT-2004-506008. This work was also supported by a Projet International de Coopération Scientifique between CNRS and the Greek General Secretariat of Research and Technology (PICS 3335). Additional support by the European Network of Excellence Nano2Life is kindly acknowledged (P.G., I.M.M., and J.-M.M.). P.K. would also like to thank the Special Account of the University of Athens (grant KA70/4/7575) and the Empirikion Foundation.
PY - 2009/6
Y1 - 2009/6
N2 - The crystal structures of the C57A and V13G molecular variants of Allochromatium vinosum 2[4Fe-4S] ferredoxin (AlvinFd) and that of the homologous ferredoxin from Escherichia coli (EcFd) have been determined at 1.05-, 1.48-, and 1.65-Å resolution, respectively. The present structures combined with cyclic voltammetry studies establish clear effects of the degree of exposure of the cluster with the lowest reduction potential (cluster I) towards less negative reduction potentials (E°). This is better illustrated by V13G AlvinFd (high exposure, E° = -594 mV) and EcFd (low exposure, E° = -675 mV). In C57A AlvinFd, the movement of the protein backbone, as a result of replacing the noncoordinating Cys57 by Ala, leads to a +50-mV upshift of the potential of the nearby cluster I, by removal of polar interactions involving the thiolate group and adjustment of the hydrogen-bond network involving the cluster atoms. In addition, the present structures and other previously reported accurate structures of this family of ferredoxins indicate that polar interactions of side chains and water molecules with cluster II sulfur atoms, which are absent in the environment of cluster I, are correlated to the approximately 180-250 mV difference between the reduction potentials of clusters I and II. These findings provide insight into the significant effects of subtle structural differences of the protein and solvent environment around the clusters of [4Fe-4S] ferredoxins on their electrochemical properties.
AB - The crystal structures of the C57A and V13G molecular variants of Allochromatium vinosum 2[4Fe-4S] ferredoxin (AlvinFd) and that of the homologous ferredoxin from Escherichia coli (EcFd) have been determined at 1.05-, 1.48-, and 1.65-Å resolution, respectively. The present structures combined with cyclic voltammetry studies establish clear effects of the degree of exposure of the cluster with the lowest reduction potential (cluster I) towards less negative reduction potentials (E°). This is better illustrated by V13G AlvinFd (high exposure, E° = -594 mV) and EcFd (low exposure, E° = -675 mV). In C57A AlvinFd, the movement of the protein backbone, as a result of replacing the noncoordinating Cys57 by Ala, leads to a +50-mV upshift of the potential of the nearby cluster I, by removal of polar interactions involving the thiolate group and adjustment of the hydrogen-bond network involving the cluster atoms. In addition, the present structures and other previously reported accurate structures of this family of ferredoxins indicate that polar interactions of side chains and water molecules with cluster II sulfur atoms, which are absent in the environment of cluster I, are correlated to the approximately 180-250 mV difference between the reduction potentials of clusters I and II. These findings provide insight into the significant effects of subtle structural differences of the protein and solvent environment around the clusters of [4Fe-4S] ferredoxins on their electrochemical properties.
KW - Allochromatium vinosum
KW - Crystal structure
KW - Electrochemistry
KW - Escherichia coli
KW - Ferredoxin
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U2 - 10.1007/s00775-009-0492-x
DO - 10.1007/s00775-009-0492-x
M3 - Article
C2 - 19290553
AN - SCOPUS:67649553352
VL - 14
SP - 783
EP - 799
JO - Journal of Biological Inorganic Chemistry
JF - Journal of Biological Inorganic Chemistry
SN - 0949-8257
IS - 5
ER -