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Journal Abstract Search


147 related items for PubMed ID: 7665570

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  • 5. The alpha 3 beta 3 gamma complex of the F1-ATPase from thermophilic Bacillus PS3 containing the alpha D261N substitution fails to dissociate inhibitory MgADP from a catalytic site when ATP binds to noncatalytic sites.
    Jault JM, Matsui T, Jault FM, Kaibara C, Muneyuki E, Yoshida M, Kagawa Y, Allison WS.
    Biochemistry; 1995 Dec 19; 34(50):16412-8. PubMed ID: 8845368
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  • 6. Co-reconstitution of plasma membrane H(+)-ATPase from yeast and bacteriorhodopsin into liposomes. ATP hydrolysis as a function of external and internal pH.
    Wach A, Dencher NA, Gräber P.
    Eur J Biochem; 1993 Jun 01; 214(2):563-8. PubMed ID: 8513805
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  • 7. Covalent modification of the catalytic sites of the H(+)-ATPase from chloroplasts, CF(0)F(1), with 2-azido-[alpha-(32)P]ADP: modification of the catalytic site 2 (loose) and the catalytic site 3 (open) impairs multi-site, but not uni-site catalysis of both ATP synthesis and ATP hydrolysis.
    Possmayer FE, Hartog AF, Berden JA, Gräber P.
    Biochim Biophys Acta; 2000 Jan 10; 1456(2-3):77-98. PubMed ID: 10627297
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  • 9. Effect of nucleotides on the thermal stability and on the deuteration kinetics of the thermophilic F0F1 ATP synthase.
    Villaverde J, Cladera J, Padrós E, Rigaud JL, Duñach M.
    Eur J Biochem; 1997 Mar 01; 244(2):441-8. PubMed ID: 9119010
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  • 10. Asymmetry of the three catalytic sites on beta subunits of TF1 from a thermophilic Bacillus strain PS3.
    Hisabori T, Kobayashi H, Kaibara C, Yoshida M.
    J Biochem; 1994 Mar 01; 115(3):497-501. PubMed ID: 8056763
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  • 11. Metal binding sites of H(+)-ATPase from chloroplast and Bacillus PS3 studied by EPR and pulsed EPR spectroscopy of bound manganese(II).
    Buy C, Girault G, Zimmermann JL.
    Biochemistry; 1996 Jul 30; 35(30):9880-91. PubMed ID: 8703962
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  • 12. Mutations in the nucleotide binding domain of the alpha subunits of the F1-ATPase from thermophilic Bacillus PS3 that affect cross-talk between nucleotide binding sites.
    Grodsky NB, Dou C, Allison WS.
    Biochemistry; 1998 Jan 27; 37(4):1007-14. PubMed ID: 9454591
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  • 13. ATP synthesis by F0F1-ATP synthase independent of noncatalytic nucleotide binding sites and insensitive to azide inhibition.
    Bald D, Amano T, Muneyuki E, Pitard B, Rigaud JL, Kruip J, Hisabori T, Yoshida M, Shibata M.
    J Biol Chem; 1998 Jan 09; 273(2):865-70. PubMed ID: 9422743
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  • 14. Covalent modification of the non-catalytic sites of the H(+)-ATPase from chloroplasts with 2-azido-[alpha-(32)P]ATP and its effect on ATP synthesis and ATP hydrolysis.
    Possmayer FE, Hartog AF, Berden JA, Gräber P.
    Biochim Biophys Acta; 2001 Feb 09; 1510(1-2):378-400. PubMed ID: 11342174
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  • 15. Purification of ATP synthase from beef heart mitochondria (F0F1) and co-reconstitution with monomeric bacteriorhodopsin into liposomes capable of light-driven ATP synthesis.
    Deisinger B, Nawroth T, Zwicker K, Matuschka S, John G, Zimmer G, Freisleben HJ.
    Eur J Biochem; 1993 Dec 01; 218(2):377-83. PubMed ID: 8269926
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  • 17. Probing the specificity of nucleotide binding to the F1-ATPase from thermophilic Bacillus PS3 and its isolated alpha and beta subunits with 2-N3-[beta, gamma-32P]ATP.
    Jault JM, Kaibara C, Yoshida M, Garrod S, Allison WS.
    Arch Biochem Biophys; 1994 Apr 01; 310(1):282-8. PubMed ID: 8161217
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  • 20. Characterization of the catalytic and noncatalytic ADP binding sites of the F1-ATPase from the thermophilic bacterium, PS3.
    Yoshida M, Allison WS.
    J Biol Chem; 1986 May 05; 261(13):5714-21. PubMed ID: 2871016
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