1 – Ubiquinone Proteins in Cardiac Mitochondria
暂无分享,去创建一个
[1] L. Yu,et al. Characterization of ubisemiquinone radical in the cytochrome b-c1 segment of the mitochondrial respiratory chain. , 1981, Archives of biochemistry and biophysics.
[2] L. Yu,et al. Identification of ubiquinone binding proteins in ubiquinol-cytochrome c reductase by arylazido ubiquinone derivative. , 1980, Biochemical and biophysical research communications.
[3] L. Yu,et al. Isolation and properties of a mitochondrial protein that converts succinate dehydrogenase into succinate-ubiquinone oxidoreductase. , 1980, Biochemistry.
[4] L. Yu,et al. Resolution and reconstitution of succinate-cytochrome c reductase: preparations and properties of high purity succinate dehydrogenase and ubiquinol-cytochrome c reductase. , 1980, Biochimica et biophysica acta.
[5] Y. Hatefi,et al. Isolation of cytochrome b560 from complex II (succinateùbiquinone oxidoreductase) and its reconstitution with succinate dehydrogenase. , 1980, The Journal of biological chemistry.
[6] B. Trumpower,et al. Differential effects of antimycin on ubisemiquinone bound in different environments in isolated succinate . cytochrome c reductase complex. , 1980, The Journal of biological chemistry.
[7] S. Albracht. The prosthetic groups in succinate dehydrogenase. Number and stoichiometry. , 1980, Biochimica et biophysica acta.
[8] B. Trumpower,et al. Purification of a reconstitutively active iron-sulfur protein (oxidation factor) from succinate . cytochrome c reductase complex of bovine heart mitochondria. , 1979, The Journal of biological chemistry.
[9] T. Ohnishi,et al. The spatial relationships and structure of the binuclear iron-sulfur clusters in succinate dehydrogenase. , 1979, The Journal of biological chemistry.
[10] L. Yu,et al. Evidence for the existence of a ubiquinone protein and its radical in the cytochromes b and c1 region in the mitochondrial electron transport chain. , 1978, Biochemical and biophysical research communications.
[11] L. Yu,et al. Reconstitution of succinate-Q reductase. , 1977, Biochemical and biophysical research communications.
[12] B. Ackrell,et al. Isolation of reconstitutively active succinate dehydrogenase in highly purified state. , 1977, The Journal of biological chemistry.
[13] L. Yu,et al. The existence of an ubiquinone binding protein in the reconstitutively active cytochrome b-c1 complex. , 1977, Biochemical and biophysical research communications.
[14] E. Ruuge,et al. Semiquinone Q in the respiratory chain of electron transport particles Electron spin resonance studies , 1977, FEBS letters.
[15] A. Konstantinov,et al. [Interaction of ubisemiquinone with the high-potential iron-sulfur center of submitochondrial particle succinate dehydrogenase. EPR study at 240 and 12 degrees K]. , 1977, Biofizika.
[16] T. Ohnishi,et al. Studies on electron paramagnetic resonance spectra manifested by a respiratory chain hydrogen carrier. , 1976, Archives of biochemistry and biophysics.
[17] P. Mitchell,et al. Possible molecular mechanisms of the protonmotive function of cytochrome systems. , 1976, Journal of theoretical biology.
[18] A. Kröger. The interaction of the radicals of ubiquinone in mitochondrial electron transport , 1976, FEBS letters.
[19] R. Ek,et al. Semiquinone Q10 EPR signal with unusual relaxation parameters , 1976 .
[20] L. Yu,et al. The presence of multiple cytochrome b proteins in succinate-cytochrome c reductase. , 1975, Biochemical and biophysical research communications.
[21] P. Mitchell. Protonmotive redox mechanism of the cytochrome b‐c 1 complex in the respiratory chain: Protonmotive ubiquinone cycle , 1975, FEBS letters.
[22] H. Beinert,et al. Interaction of ubisemiquinone with a paramagnetic component in heart tissue. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[23] L. Yu,et al. Soluble cytochrome b-c1 complex and the reconstitution of succinate-cytochrome c reductase. , 1974, The Journal of biological chemistry.
[24] M. Klingenberg,et al. Further evidence for the pool function of ubiquinone as derived from the inhibition of the electron transport by antimycin. , 1973, European journal of biochemistry.
[25] M. Klingenberg,et al. The kinetics of the redox reactions of ubiquinone related to the electron-transport activity in the respiratory chain. , 1973, European journal of biochemistry.
[26] J. Berden,et al. Oxidoreduction of cytochrome b in the presence of antimycin. , 1972, Biochimica et biophysica acta.
[27] K. A. Davis,et al. Succinate dehydrogenase. II. Enzymatic properties. , 1971, Biochemistry.
[28] K. A. Davis,et al. Succinate dehydrogenase. I. Purification, molecular properties, and substructure. , 1971, Biochemistry.
[29] J. Donovan,et al. Batch purification of ovomucoid and characterization of the purified product. , 1971, Biochemistry.
[30] L. Ernster,et al. Electron spin resonance measurement on ubiquinone-depleted and ubiquinone-replenished submitochondrial particles. , 1970, Biochimica et biophysica acta.
[31] Y. Hatefi,et al. Reconstitution of succinate-coenzyme Q reductase (complex II) and succinate oxidase activities by a highly purified, reactivated succinate dehydrogenase. , 1969, The Journal of biological chemistry.
[32] H. Baum,et al. On the mechanism of electron transfer in complex iii of the electron transfer chain. , 1967, Proceedings of the National Academy of Sciences of the United States of America.
[33] R. Estabrook,et al. Oxidation and phosphorylation , 1967 .
[34] E. Redfearn,et al. Ubiquinone (Coenzyme Q) and the Respiratory Chain , 1966, Nature.
[35] C. Veeger,et al. THE AMOUNT OF NON-HAEM IRON AND ACID-LABILE SULPHUR IN PURIFIED PIG-HEART SUCCINATE DEHYDROGENASE. , 1965, Biochimica et biophysica acta.
[36] S. Takemori,et al. RECONSTITUTION OF RESPIRATORY CHAIN ENZYME SYSTEMS. XIV. RECONSTITUTION OF SUCCINATE-CYTOCHROME C REDUCTASE FROM SOLUBLE SUCCINATE DEHYDROGENASE AND THE CYTOCHROME B-C1 PARTICLE. , 1964, The Journal of biological chemistry.
[37] S. Takemori,et al. RECONSTITUTION OF RESPIRATORY CHAIN ENZYME SYSTEMS. 13. SEQUENTIAL FRAGMENTATION OF SUCCINATE OXIDASE: PREPARATION AND PROPERTIES OF SUCCINATE-CYTOCHROME C REDUCTASE AND THE CYTOCHROME B-C1 PARTICLE. , 1964, The Journal of biological chemistry.
[38] W. S. Zaugg,et al. STUDIES ON THE ELECTRON TRANSFER SYSTEM. 58. PROPERTIES OF A NEW OXIDATION-REDUCTION COMPONENT OF THE RESPIRATORY CHAIN AS STUDIED BY ELECTRON PARAMAGNETIC RESONANCE SPECTROSCOPY. , 1964, The Journal of biological chemistry.
[39] T. King. Stoichiometry of labile sulfide, nonheme iron and flavin in reconstitutively active succinate dehydrogenase from heart mitochondria. , 1964, Biochemical and biophysical research communications.
[40] King Te. RECONSTITUTION OF RESPIRATORY CHAIN ENZYME SYSTEMS. XII. SOME OBSERVATIONS ON THE RECONSTITUTION OF THE SUCCINATE OXIDASE SYSTEM FROM HEART MUSCLE. , 1963 .
[41] T. King. Reconstitution of respiratory-chain enzyme systems. V. Reversible dissociation and reconstitution of mitochondrial succinate oxidase. , 1962, Biochimica et biophysica acta.
[42] D. E. Green. Structure-function interrelationships in mitochondrial electron transport and oxidative phosphorylation , 1959 .