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1.
J Am Chem Soc ; 129(13): 3906-17, 2007 Apr 04.
Artigo em Inglês | MEDLINE | ID: mdl-17343378

RESUMO

Intracomplex electron transfer (ET) occurs most often in intrinsically transient, low affinity complexes. As a result, the means by which adequate specificity and reactivity are obtained to support effective ET is still poorly understood. We report here on two such ET complexes: cytochrome b5 (cyt b5) in reaction with its physiological partners, myoglobin (Mb) and hemoglobin (Hb). These complexes obey the Dynamic Docking (DD) paradigm: a large ensemble of weakly bound protein-protein configurations contribute to binding in the rapid-exchange limit, but only a few are ET-active. We report the ionic-strength dependence of the second-order rate constant, k2, for photoinitiated ET from within all four combinations of heme-neutralized Zn deuteroporphyrin-substituted Mb/alphaHb undergoing ET with cyt b5, the four "corners" of a "heme-neutralization square". These experiments provide insights into the relative importance of both global and local electrostatic contributions to the binding of reactive configurations, which are too few to be observed directly. To interpret the variations of k2 arising from heme neutralization, we have developed a procedure by which comparisons of the ET rate constants for a heme-neutralization square permit us to decompose the free energy of reactive binding into individual local electrostatic contributions associated with interactions between (i) the propionates of the two hemes and (ii) the heme of each protein with the polypeptide of its partner. Most notably, we find the contribution from the repulsion between propionates of partner hemes to the reactive binding free energy to be surprisingly small, DeltaG(Hb) approximately +1 kcal/mol at ambient temperature, 18 mM ionic strength, and we speculate about possible causes of this observation. To confirm the fundamental assumption of these studies, that the structure of a heme-neutralized protein is unaltered either by substitution of Zn or by heme neutralization, we have obtained the X-ray structure of ZnMb prepared with the porphyrin dimethyl ester and find it to be nearly isostructural with the native protein.


Assuntos
Citocromos b5/química , Elétrons , Heme/química , Hemoglobinas/química , Mioglobina/química , Animais , Bovinos , Simulação por Computador , Cristalografia por Raios X , Citocromos b5/metabolismo , Heme/metabolismo , Hemoglobinas/metabolismo , Cavalos , Humanos , Modelos Moleculares , Mioglobina/metabolismo , Concentração Osmolar , Ligação Proteica , Estrutura Quaternária de Proteína , Estrutura Terciária de Proteína , Eletricidade Estática , Titulometria , Zinco/química
2.
Proc Natl Acad Sci U S A ; 102(10): 3564-9, 2005 Mar 08.
Artigo em Inglês | MEDLINE | ID: mdl-15738411

RESUMO

We propose that the forward and reverse halves of a flash-induced protein-protein electron transfer (ET) photocycle should exhibit differential responses to dynamic interconversion of configurations when the most stable configuration is not the most reactive, because the reactants exist in different initial configurations: the flash-photoinitiated forward ET process begins with the protein partners in an equilibrium ensemble of configurations, many of which have little or no reactivity, whereas the reactant of the thermal back ET (the charge-separated intermediate) is formed in a nonequilibrium, "activated" protein configuration. We report evidence for this proposal in measurements on (i) mixed-metal hemoglobin hybrids, (ii) the complex between cytochrome c peroxidase and cytochrome c, and (iii and iv) the complexes of myoglobin and isolated hemoglobin alpha-chains with cytochrome b(5). For all three systems, forward and reverse ET does respond differently to modulation of dynamic processes; further, the response to changes in viscosity is different for each system.


Assuntos
Transporte de Elétrons , Proteínas/química , Citocromo-c Peroxidase/química , Citocromos c/química , Hemoglobinas/química , Humanos , Mioglobina/química , Conformação Proteica , Viscosidade
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