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Biochemistry. Biokhimiia|December 28, 1999
Mitochondrial ATP synthase: fifteen years laterA D VinogradovBiochemistry. Biokhimiia|December 12, 2001
Respiratory complex I: structure, redox components, and possible mechanisms of energy transductionA D VinogradovJournal of Bioenergetics and Biomembranes|August 1, 1993
Kinetics, control, and mechanism of ubiquinone reduction by the mammalian respiratory chain-linked NADH-ubiquinone reductaseA D VinogradovThe Journal of Experimental Biology|December 22, 1999
Steady-state and pre-steady-state kinetics of the mitochondrial F(1)F(o) ATPase: is ATP synthase a reversible molecular machine?A D VinogradovBiochemistry. Biokhimiia|November 26, 2019
New Perspective on the Reversibility of ATP Synthesis and Hydrolysis by Fo×F1-ATP Synthase (Hydrolase)A D VinogradovBiokhimiia (Moscow, Russia)|December 1, 1986
[Succinate-ubiquinone reductase site of the respiratory chain]A D VinogradovIUBMB Life|January 19, 2002
The mitochondrial complex I: progress in understanding of catalytic propertiesA D Vinogradov, V G GrivennikovaBiochimica Et Biophysica Acta|August 30, 1990
Slow active/inactive transition of the mitochondrial NADH-ubiquinone reductaseA B Kotlyar, A D VinogradovFEBS Letters|July 8, 1996
Slow Ca2+-induced inactive/active transition of the energy-dependent Ca2+ transporting system of rat liver mitochondria: clue for Ca2+ influx cooperativityF O Kasparinsky, A D VinogradovFEBS Letters|July 29, 1991
Direct demonstration of enol-oxaloacetate as an immediate product of malate oxidation by the mammalian succinate dehydrogenaseM V Panchenko, A D VinogradovPageof 8