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Энергетика биологических мембран - Скулачев В.П.

Скулачев В.П. Энергетика биологических мембран — М.: Наука, 1989. — 564 c.
ISBN 5-02-004027-4
Скачать (прямая ссылка): energetikabiologicheskihmembran1989.djvu
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650. Grinstein S., Meulen J. V., Furuya W. Possible role of H+-alkali cation counter-transport in secretory granule swelling during exocytosis // FEBS Lett. 1982. Vol. 148. P. 1—4.
651. Groma G. I., Szabo G., Varo G. Direct measurement of picosecond charge separation in bacteriorhodopsin // Nature. 1984. Vol. 308. 557—558.
652. Gromet—Elhanan Z., Khananshvili D., Weiss S., Kanazawa H., Futai M. АТР-synthesis and hydrolysis by a hybrid system reconstituted from the P-subunit of Escherichia coli Fj—ATPase and P-less chroma top ho res of Rhodospirillumrubrum// J. Biol. Chem. 1985. Vol. 260. P. 12635—12640.
653. Grubmeyer C., Penefsky H. S. Cooperativity between catalalytic sites in the mechanism of action of beef heart mitochondrial adenosine triphosphatase // Ibid. 1981. Vol. 256. P. 3728—3734.
16* В. П. Скулачев
486
Список литературы
654. GrunhagenH.H., Witt Н. Т. Primary ionic events in the functional membrane of photosynthesis. Umbelliferone as indicator for pH changes in one turn-over// Ztschr. Naturforsch. 1970. Vol. 25b. P. 373—386.
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656. GuffantiA.A. АТР-dependent Na+/H+ antiport activity in Bacillus alcalophilus requires generation of an electrochemical gradient of protons// FEMS Microbiol. Lett. 1983. Vol. 17. P. 307-310.
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658. GuffantiA.A., CohnD.E., KabackH.R., KrulwichT.A. Relationship between the Na+/H+ antiporter and Na+ / substrate symport in Bacillus alcalophilus // Proc. Nat. Acad. Sci. US. 1981. Vol. 78. P. 1481 — 1484.
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661. Gulewitch W. S., Amdiradzhibi S. Ueber das Carnosin, eine neue organi-sche Base des Fleischextractes // Ber. Dt. Chem. Ges. 1900. Bd. 33. S. 1902—1903.
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665. Gutman M. Nachliel E., GershonE. Effect of buffer on kinetics of proton equilibration with a protonable group // Ibid. P. 2937—2941.
666. HackettN.R., BraimanM.S., Gilles^Gonzales M -A ., Khorana G. H., LerchL.B., KronisK.A., Chao R. Effect of amino acid substitutions on the structure and function of bacteriorhodopsin // XIII Intern. Congr. Biochem. Abstr. Amsterdam, 1985. P. 156.
667. Haddock В. A. The genetics of electron transport in Escherichia coli // Membranes and transport / Ed. A. N. Martonosi. N. Y.; L.: Plenum press, 1982. Vol. 1. P. 459—464.
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670. Halfen L. N., Castenholz R. W. Gliding motility of blue-green algae: Oscillatoria princeps // J. Phycol. 1971. Vol. 7. P. 133—145.
671. Hamaide F., Kushner D. /., Sprott G. D. Proton motive force and Na+/H+ antiport in a moderate halophile // J. Bacteriol. 1983. Vol. 156. P. 537—
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672. Hamaide F., Kushner D.J., Sprott G.D. Proton circulation in Vibrio costicola // Ibid. 1985. Vol. 161. P. 681—686.
673. Hamaide F., Sprott G. D., Kushner D. J. Energetics of sodium-dependent a-aminoisobutyric acid transport in the moderate halophilic Vibrio costicola // Biochim. et biophys. acta. 1984. Vol. 766. P. 77—87.
674. Hamamoto Т., Carrasco N., Matsushita K., Kaback H. R., Montal M. Direct measurement of the electrogenic activity of о-type cytochrome oxidase from Escherichia coli reconstituted into planar lipid bilayers // Proc. Nat. Acad. Sci. US. 1985. Vol. 82. P. 2570—2573.
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675. Hamamoto Т., Ohno К., Kagawa Y. Net adenosine triphosphate sunthesis driven by an external electric field in rat liver mitochondria // J. Biochem. 1982. Vol. 91. P. 1759—1766.
676. Hara YYamada J., Nakao M. Proton transport catalyzed by the sodium pump. Ouabain-sensitive ATPase activity and the phosphorylation of Na, К—ATPase in the absence of sodium ions // Ibid. 1986. Vol. 99. P. 531-539.
677. Haraux F., SigalatC., Moreau A., De Kouchkovsky Y. The efficiency of energized protons for ATP synthesis depends on the membrane topography in thylakoids // FEBS Lett. 1983. Vol. 155. P. 248—251.
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