Oxidation-State-Dependent Protein Docking between Cytochrome c and Cytochrome b5: High-Pressure Laser Flash Photolysis Study
- 12 July 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 41 (31) , 9824-9832
- https://doi.org/10.1021/bi0257890
Abstract
To characterize the protein-protein interaction during electron transfer, we used Zn-substituted cytochrome c (ZnCytc) as a model of ferrous Cytc and determined the volume change, DeltaV(d)(Zn), for the dissociation of its complex with ferric cytochrome b(5) (Cytb(5)) by the pressure dependence of its photoinduced electron-transfer kinetics. Under ambient pressure, the dissociation constant, K(d)(Zn), of the ZnCytc/Cytb(5) complex was dependent on the buffer concentration, 1.5 and 12 microM in 2 and 10 mM Tris-HCl, pH 7.4, respectively, which was consistent with formation of salt bridges in its complexation. The dissociation of one salt bridge is usually associated with large volume changes of -10 to -30 cm(3) mol(-1), while pressure dependence of K(d)(Zn) resulted in smaller value of DeltaV(d)(Zn), -8.5 cm(3) mol(-1). Therefore, the interaction between ZnCytc and Cytb(5) cannot be explained only by salt bridge interaction, and the partial cancellation by the positive volume change due to the additional hydrophobic interaction is a plausible explanation for the observed DeltaV(d)(Zn). In addition, DeltaV(d)(Zn) of -8.5 cm(3) mol(-1) was considerably smaller than the previously reported volume change, DeltaV(d)(Fe), of -122 cm(3) mol(-1) in the ferric Cytc/Cytb(5) complex dissociation [Rodgers and Sligar (1991) J. Mol. Biol. 221, 1453-1460]. ZnCytc used here has been assumed to be a reliable model of ferrous Cytc, and thus the discrepancy between our present DeltaV(d)(Zn) and the previous DeltaV(d)(Fe) is discussed on the basis of the protein docking dependent on the oxidation states of heme iron in Cytc.Keywords
This publication has 15 references indexed in Scilit:
- Pressure Dependence of the Intramolecular Electron Transfer Reaction in Myoglobin ReinvestigatedThe Journal of Physical Chemistry B, 2000
- Pressure Dependence of Protein Electron Transfer Reactions: Theory and SimulationThe Journal of Physical Chemistry B, 1999
- Photoacoustic Evaluation of Volume and Entropy Changes in Energy and Electron Transfer. Triplet State Porphyrin with Oxygen and Naphthoquinone-2-SulfonateThe Journal of Physical Chemistry, 1996
- Cytochrome c and cytochrome c oxidase interactions: the effects of ionic strength and hydrostatic pressure studied with site-specific modifications of cytochrome cBiochemistry and Cell Biology, 1992
- Redox-dependent molecular recognition in proteins: site-directed mutagenesis suggests that cytochrome c oxidation state governs binding and recognition to cytochrome c peroxidaseJournal of the American Chemical Society, 1992
- Oxidation state-dependent conformational changes in cytochrome cJournal of Molecular Biology, 1992
- Mapping electrostatic interactions in macromolecular associationsJournal of Molecular Biology, 1991
- Volume changes associated with cytochrome c oxidase-porphyrin cytochrome c equilibriumBiochemistry, 1984
- The ionic strength dependence of the rate of a reaction between two large proteins with a dipole momentBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1983
- An hypothetical structure for an intermolecular electron transfer complex of cytochromes c and b5Journal of Molecular Biology, 1976