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Results 1 to 25 of 327

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CONTRIBUTIONS OF THE ELECTRIC POTENTIAL DIFFERENCE OF A MEMBRANE SYSTEM UNDER CLAMPED IONIC GRADIENTREJOU MICHEL A; VILLARDI M; DELMOTTE M et al.1979; J. ELECTROANAL. CHEM. INTERFACIAL ELECTROCHEM.; NLD; DA. 1979; VOL. 6; NO 2; PP. 289-304; BIBL. 27 REF.Article

SYNTHESIS OF ATP BY AN ARTIFICIALLY IMPOSED ELECTROCHEMICAL PROTON GRADIENT IN CHROMAFFIN GRANULE GHOSTSROISIN MP; SCHERMAN D; HENRY JP et al.1980; F.E.B.S. LETTERS; NLD; DA. 1980; VOL. 115; NO 1; PP. 143-147; BIBL. 22 REF.Article

ON THE ELECTROCHEMISTRY OF BIMOLECULAR LIPID MEMBRANES IN THE IODINE-IODIDE SYSTEMKRAWCZYK S.1978; STUD. BIOPHYS.; DDR; DA. 1978; VOL. 72; NO 3; PP. 145-149; ABS. RUS; BIBL. 15 REF.Article

GENERATION OF AN ELECTROCHEMICAL PROTON GRADIENT BY NITRATE RESPIRATION IN MEMBRANE VESICLES FROM ANAEROBICALLY GROWN ESCHERICHIA COLI.BOONSTRA J; KONINGS WN.1977; EUROP. J. BIOCHEM.; GERM.; DA. 1977; VOL. 78; NO 2; PP. 361-368; BIBL. 33 REF.Article

PH-DEPENDENT CHANGES IN PROTON: SUBSTRATE STOICHIOMETRIES DURING ACTIVE TRANSPORT IN ESCHERICHIA COLI MEMBRANE VESICLES.RAMOS S; KABACK HR.1977; BIOCHEMISTRY; U.S.A.; DA. 1977; VOL. 16; NO 19; PP. 4271-4275; BIBL. 21 REF.Article

THE PROTON GRADIENT ACROSS MYCOPLASMA MEMBRANESSCHUMMER U; SCHIEFER HG; GERHARDT U et al.1981; CURR. MICROBIOL.; ISSN 0343-8651; USA; DA. 1981; VOL. 5; NO 6; PP. 371-374; BIBL. 14 REF.Article

AEROTAXIS IN SALMONELLA TYPHIMURIUM: ROLE OF ELECTRON TRANSPORTLASZLO DJ; TAYLOR BL.1981; J. BACTERIOL.; ISSN 0021-9193; USA; DA. 1981; VOL. 145; NO 2; PP. 990-1001; BIBL. 55 REF.Article

ENERGY REQUIREMENT FOR MAINTENANCE OF THE TRANSMEMBRANE POTASSIUM GRADIENT IN KLEBSIELLA AEROGENES NCTC 418: A CONTINUOUS CULTURE STUDYHUETING S; DE LANGE T; TEMPEST DW et al.1979; ARCH. MICROBIOL.; DEU; DA. 1979; VOL. 123; NO 2; PP. 183-188; BIBL. 24 REF.Article

PROTONMOTIVE FORCE AND MOTILITY OF BACILLUS SUBTILIS.SHIOI JI; IMAE Y; OOSAWA F et al.1978; J. BACTERIOL.; U.S.A.; DA. 1978; VOL. 133; NO 3; PP. 1083-1088; BIBL. 20 REF.Article

LIGHT-DRIVEN PROTON TRANSLOCATIONS IN HALOBACTERIUM HALOBIUM.BOGOMOLNI RA; BAKER RA; LOZIER RH et al.1976; BIOCHIM. BIOPHYS. ACTA; PAYS-BAS; DA. 1976; VOL. 440; NO 1; PP. 68-88; BIBL. 27 REF.Article

EFFECT OF THE LACTOPEROXIDASE BACTERICIDAL SYSTEM ON THE FORMATION OF THE ELECTROCHEMICAL PROTON GRADIENT IN E. COLILAW BA; JOHN P.1981; FEMS MICROBIOL. LETT.; ISSN 0378-1097; NLD; DA. 1981; VOL. 10; NO 1; PP. 67-70; BIBL. 25 REF.Article

THE DRIVING FORCE FOR PROTON(S) METABOLITES COTRANSPORT IN BACTERIAL CELLS.ROTTENBERG H.1976; F.E.B.S. LETTERS; NETHERL.; DA. 1976; VOL. 66; NO 2; PP. 159-163; BIBL. 14 REF.Article

CATION AND LOCAL ANESTHETIC CONDUCTANCE INDUCED BY THE NEGATIVELY CHARGED IONOPHORE BR-X537A IN LIPID BILAYERSROY G; OKADA Y; LAPRADE R et al.1982; CAN. J. BIOCHEM.; ISSN 0008-4018; CAN; DA. 1982; VOL. 60; NO 1; PP. 49-56; ABS. FRE; BIBL. 7 REF.Article

GRADATION OF THE MAGNITUDE OF THE ELECTROCHEMICAL PROTON GRADIENT IN MYCOPLASMA CELLSBENYOUCEF M; RIGAUD JL; LEBLANC G et al.1981; EUR. J. BIOCHEM.; ISSN 0014-2956; DEU; DA. 1981; VOL. 113; NO 3; PP. 499-506; BIBL. 26 REF.Article

ELECTROCHEMICAL PROTON GRADIENT IN MICROCOCCUS LYSODEIKTICUS CELLS AND MEMBRANE VESICLESFRIEDBERG I; KABACK HR.1980; J. BACTERIOL.; USA; DA. 1980; VOL. 142; NO 2; PP. 651-658; BIBL. 40 REF.Article

ELECTROGENIC TRANSPORT OF BIOGENIC AMINES IN CHROMAFFIN GRANULE MEMBRANE VESICLESKANNER BI; SHARON I; MARON R et al.1980; F.E.B.S. LETTERS; NLD; DA. 1980; VOL. 111; NO 1; PP. 83-86; BIBL. 26 REF.Article

GENERATION OF AN ELECTROCHEMICAL PROTON GRADIENT BY LACTATE EFFLUX IN MEMBRANE VESICLES OF ESCHERICHIA COLITEN BRINK B; KONINGS WN.1980; EUR. J. BIOCHEM.; ISSN 0014-2956; DEU; DA. 1980; VOL. 111; NO 1; PP. 59-66; BIBL. 35 REF.Article

SODIUM GRADIENT-DEPENDENT L-GLUTAMATE TRANSPORT IN RENAL BRUSH BORDER MEMBRANE VESICLES. EVIDENCE FOR AN ELECTRONEUTRAL MECHANISMSCHNEIDER EG; HAMMERMAN MR; SACKTOR B et al.1980; J. BIOL. CHEM.; ISSN 0021-9258; USA; DA. 1980; VOL. 255; NO 16; PP. 7650-7656; BIBL. 44 REF.Article

THE SODIUM ELECTROCHEMICAL POTENTIAL-MEDIATED UPHILL TRANSPORT OF D-GLUCOSE IN RENAL BRUSH BORDER MEMBRANE VESICLESBECK JC; SACKTOR B.1978; J. BIOL. CHEM.; USA; DA. 1978; VOL. 253; NO 15; PP. 5531-5535; BIBL. 21 REF.Article

TRANSMEMBRANE ELECTRICAL POTENTIAL FORMATION IN SPINACH CHLOROPLASTS. INVESTIGATION USING A RAPIDLY-RESPONDING EXTRINSIC PROBESCHUURMANS JJ; CASEY RP; KRAAYENHOF R et al.1978; F.E.B.S. LETTERS; NLD; DA. 1978; VOL. 94; NO 2; PP. 405-409; BIBL. 27 REF.Article

STUDIES OF THE BETA -GALACTOSIDE TRANSPORTER IN INVERTED MEMBRANE VESICLES OF ESCHERICHIA COLI. II. SYMMETRICAL BINDING OF A DANSYLGALACTOSIDE INDUCED BY AN ELECTROCHEMICAL PROTON GRADIENT AND BY LACTOSE EFFLUX.LANCASTER JR JR; HINKLE PC.1977; J. BIOL. CHEM.; U.S.A.; DA. 1977; VOL. 252; NO 21; PP. 7662-7666; BIBL. 20 REF.Article

NONUNIFORM FIELD GEL ELECTROPHORESISDENNISON C; LINDNER WA; PHILLIPS NCK et al.1982; ANAL. BIOCHEM.; ISSN 0003-2697; USA; DA. 1982; VOL. 120; NO 1; PP. 12-18; BIBL. 5 REF.Article

ENERGY SOURCE FOR LITHIUM EFFLUX IN YEASTRODRIGUEZ NAVARRO A; SANCHO ED; PEREZ LLOVERES C et al.1981; BIOCHIM. BIOPHYS. ACTA; ISSN 0006-3002; NLD; DA. 1981; VOL. 640; NO 1; PP. 352-358; BIBL. 27 REF.Article

THE ACTIVE TRANSPORT OF MONOSACCHARIDES BY THE YEAST METSCHNIKOWIA REUKAUFII: EVIDENCE FOR AN ELECTROCHEMICAL GRADIENT OF H+ ACROSS THE CELL MEMBRANEALDERMANN B; HOEFER M.1981; EXP. MYCOL.; ISSN 0147-5975; USA; DA. 1981; VOL. 5; NO 2; PP. 120-132; BIBL. 2 P.Article

CONTROL OF THE PHOTOCYCLE IN BACTERIORHODOPSIN BY ELECTROCHEMICAL GRADIENTSQUINTANILHA AT.1980; F.E.B.S. LETTERS; NLD; DA. 1980; VOL. 117; NO 1; PP. 8-12; BIBL. 20 REF.Article

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