Determination of the Hemoglobin Surface Domains That React with Cytochrome b5
- 26 January 2001
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 40 (7) , 2060-2065
- https://doi.org/10.1021/bi0021028
Abstract
We have compared the photoinitiated electron-transfer (ET) reaction between cytochrome b(5) (b(5)) and zinc mesoporphyrin-substituted hemoglobin [(ZnM)Hb] and Hb variants in order to determine whether b(5) binds to the subunit surface of either or both Hb chains, or to sites which span the dimer--dimer interface. Because the dimer--dimer interface would be disrupted for monomers or alpha beta dimers, we studied the reaction of b(5) with alpha ZnM chains and (ZnM)Hb beta W37E, which exists as alpha beta dimers in solution. Triplet quenching titrations of the ZnHb proteins with Fe(3+)b(5) show that the binding affinity and ET rate constants for the alpha-chains are the same when they are incorporated into a Hb tetramer or dimer, or exist as monomers. Likewise, the parameters for beta-chains in tetramers and dimers differ minimally. In parallel, we have modified the surface of the Hb chains by neutralizing the heme propionates through the preparation of zinc deuterioporphyrin dimethyl ester hemoglobin, (ZnD-DME)Hb. The charge neutralization increases the ET rate constants 100-fold for the alpha-chains and 40-fold for the beta-chains (but has has little effect on the affinity of either chain type for b(5), similar to earlier results for myoglobin). Together, these results indicate that b(5) binds to sites at the subunit surface of each chain rather than to sites which span the dimer-dimer interface. The charge-neutralization results further suggest that b(5) binds over a broad area of the subunit face, but reacts only in a minority population of binding geometries.Keywords
This publication has 10 references indexed in Scilit:
- Binding and Electron Transfer between Cytochrome b5 and the Hemoglobin α- and β-Subunits through the Use of [Zn, Fe] HybridsJournal of the American Chemical Society, 1998
- Cyclic Electron Transfer within the [Zn-Myoglobin, Cytochrome b5] ComplexJournal of the American Chemical Society, 1997
- Kinetic studies of electron transfer in the cyt b 5 : metHb systemJBIC Journal of Biological Inorganic Chemistry, 1996
- Theory and Practice of Electron Transfer within Protein−Protein Complexes: Application to the Multidomain Binding of Cytochromecby CytochromecPeroxidaseChemical Reviews, 1996
- Electron transfer from cytochrome b5 to methemoglobinThe Journal of Physical Chemistry, 1993
- Interprotein electron transferChemical Reviews, 1992
- Zinc and magnesium substitution in hemoglobin: cyclic electron transfer within mixed-metal hybrids and crystal structure of MgHbJournal of the American Chemical Society, 1991
- Interactions of porphyrins with purified DNA and more highly organized structuresJournal of Inorganic Biochemistry, 1988
- Long-range triplet-triplet energy transfer within metal-substituted hemoglobinsJournal of the American Chemical Society, 1981
- Titration curves of interacting cytochrome b5 and hemoglobin by isoelectric focusing-electrophoresisBiochemical and Biophysical Research Communications, 1978