Effects of Q metabolites and related compounds on mitochondrial succinate and NADH oxidase systems.
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[1] M. Kawada,et al. Synthesis of quinones having carboxy- and hydroxy-alkyl side chains, and their effects on rat-liver lysosomal membrane. , 1982, Chemical & pharmaceutical bulletin.
[2] H. Morimoto,et al. Ubiquinone and related compounds. XXXI. Synthesis of urinary metabolites of ubiquinone, phylloquinone, alpha-tocopherol and their related compounds. , 1978, Chemical and pharmaceutical bulletin.
[3] L. Ernster,et al. Extraction and reincorporation of ubiquinone in submitochondrial particles. , 1978, Methods in enzymology.
[4] E. Bertoli,et al. The inhibition of NADH oxidase by the lower homologs of coenzyme Q. , 1975, Archives of biochemistry and biophysics.
[5] Hiroshi Morimoto,et al. Ubichinone und verwandte Substanzen, XXIII1) Synthese von Chinonen mit neuen Kondensationsmitteln , 1972 .
[6] H. Morimoto,et al. Ubiquinone and related compounds. XX. Coenzymatic activity of ubiquinone and related compounds. II. , 1972, Biochimica et biophysica acta.
[7] J. Casida,et al. On the functional organization of the respiratory chain at the dehydrogenase-coenzyme Q junction. , 1971, Biochemistry.
[8] H. Morimoto,et al. Metabolic comparison between ubiquinone-7 and ubiquinone-9 in rats. , 1971, International journal for vitamin and nutrition research. Internationale Zeitschrift fur Vitamin- und Ernahrungsforschung. Journal international de vitaminologie et de nutrition.
[9] H. Morimoto,et al. Synthesis of ubiquinone-7 metabolites. , 1970, Biochemistry.
[10] H. Morimoto,et al. Metabolism of ubiquinone-7. , 1970, Biochemistry.
[11] Hiroshi Morimoto,et al. Ubichinone und verwandte Substanzen, XIII.über Epoxy‐ubichinone , 1969 .
[12] B. Persson,et al. Studies with ubiquinone-depleted submitochondrial particles. Essentiality of ubiquinone for the interaction of succinate dehydrogenase, NADH dehydrogenase, and cytochrome b. , 1969, European journal of biochemistry.
[13] G. Lenaz,et al. Organic structural specificity and sites of coenzyme Q in succinoxidase and DPNH-oxidase systems. , 1968, Archives of biochemistry and biophysics.
[14] P. V. Blair. [12] The large-scale preparation and properties of heart mitochondria from slaughterhouse material , 1967 .
[15] G. Lenaz,et al. Organic structural specificity of coenzyme Q for biological activity. , 1966, Biochemical and biophysical research communications.
[16] L. Szarkowska. The restoration of DPNH oxidase activity by coenzyme Q (ubiquinone). , 1966, Archives of biochemistry and biophysics.
[17] B. Milborrow,et al. A Simple Assessment of Partition Data for Correlating Structure and Biological Activity Using Thin-Layer Chromatography , 1965, Nature.
[18] K. Utsumi. RELATION BETWEEN MITOCHONDRIAL SWELLING INDUCED BY INORGANIC PHOSPHATE AND ACCUMULATION OF P 32 IN MITOCHONDRIAL PI FRACTION. , 1963, Acta medicinae Okayama.
[19] S. Fleischer,et al. Studies on the electron-transport system XXVII. The respiratory activity of acetone-extracted beef-heart mitochondria role of coenzyme Q and other lipids , 1961 .
[20] F. L. Crane,et al. Quinones in electron transport. II. Influence of accessory lipid factors on the activity of coenzyme Q analogs. , 1960, Archives of biochemistry and biophysics.
[21] Ennis Layne,et al. SPECTROPHOTOMETRIC AND TURBIDIMETRIC METHODS FOR MEASURING PROTEINS , 1957 .
[22] E. C. Bate-smith,et al. Chromatographic behaviour and chemical structure I. Some naturally occuring phenolic substances , 1950 .