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PUBMED FOR HANDHELDS

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184 related items for PubMed ID: 6136508

  • 1. Interaction of nucleotides and cations with the (Ca2+, Mg2+)-ATPase of sarcoplasmic reticulum as determined by fluorescence changes of bound 1-anilino-8-naphthalenesulfonate.
    Arav R, Aderem AA, Berman MC.
    J Biol Chem; 1983 Sep 10; 258(17):10433-8. PubMed ID: 6136508
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  • 2. Distances between the FITC-binding site in the (Ca2++Mg2+)-ATPase from sarcoplasmic reticulum and fluorescent probes located in the membrane.
    Teruel JA, Gómez-Fernández JC.
    Biochem Int; 1987 Mar 10; 14(3):409-16. PubMed ID: 2954553
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  • 3. Phosphoenzyme conformational states and nucleotide-binding site hydrophobicity following thiol modification of the Ca2+-ATPase of sarcoplasmic reticulum from skeletal muscle.
    Davidson GA, Berman MC.
    J Biol Chem; 1987 May 25; 262(15):7041-6. PubMed ID: 2953714
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  • 4. Interaction of valinomycin and monovalent cations with the (Ca2+,Mg2+)-ATPase of skeletal muscle sarcoplasmic reticulum.
    Davidson GA, Berman MC.
    J Biol Chem; 1985 Jun 25; 260(12):7325-9. PubMed ID: 3158656
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  • 6. The interaction of vanadate ions with the Ca-ATPase from sarcoplasmic reticulum.
    Pick U.
    J Biol Chem; 1982 Jun 10; 257(11):6111-9. PubMed ID: 6210692
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  • 8. Modulation of the sarcoplasmic reticulum (Ca2+ + Mg2+)-ATPase by pentobarbital.
    Fernandez-Salguero P, Henao F, Laynez J, Gutierrez-Merino C.
    Biochim Biophys Acta; 1990 Feb 16; 1022(1):33-40. PubMed ID: 2137349
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  • 9. The rate of Ca2+ translocation by sarcoplasmic reticulum (Ca2+ + Mg2+)-ATPase measured with intravesicular arsenazo III.
    Beeler T, Keffer J.
    Biochim Biophys Acta; 1984 Jun 13; 773(1):99-105. PubMed ID: 6145443
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  • 10. Studies of the interactions of 2',3'-O-(2,4,6-trinitrocyclohexyldienylidine)adenosine nucleotides with the sarcoplasmic reticulum (Ca2+ + Mg2+)-ATPase active site.
    Nakamoto RK, Inesi G.
    J Biol Chem; 1984 Mar 10; 259(5):2961-70. PubMed ID: 6142049
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  • 11. Changes in affinity for calcium ions with the formation of two kinds of phosphoenzyme in the Ca2+,Mg2+-dependent ATPase of sarcoplasmic reticulum.
    Nakamura Y, Tonomura Y.
    J Biochem; 1982 Feb 10; 91(2):449-61. PubMed ID: 6121794
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  • 12. Mechanism of inhibition of Ca2+-transport activity of sarcoplasmic reticulum Ca2+-ATPase by anisodamine.
    Pang Y, Li X, Qin S, Zhang H, Chen J.
    Indian J Biochem Biophys; 2006 Dec 10; 43(6):351-9. PubMed ID: 17285799
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  • 13. Characterization of the single Ca(2+)-binding site on the Ca(2+)-ATPase reconstituted with short- or long-chain phosphatidylcholines.
    Starling AP, Khan YM, East JM, Lee AG.
    Biochem J; 1994 Dec 01; 304 ( Pt 2)(Pt 2):569-75. PubMed ID: 7998994
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  • 15. Reaction mechanism of (Ca2+, Mg2+)-ATPase of sarcoplasmic reticulum vesicles. II. (ATP, ADP)-dependent Ca2+-Ca2+ exchange across the membranes.
    Takakuwa Y, Kanazawa T.
    J Biol Chem; 1981 Mar 25; 256(6):2696-700. PubMed ID: 6110659
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  • 16. Reaction mechanism of calcium-ATPase of sarcoplasmic reticulum. Substrates for phosphorylation reaction and back reaction, and further resolution of phosphorylated intermediates.
    Yamada S, Ikemoto N.
    J Biol Chem; 1980 Apr 10; 255(7):3108-19. PubMed ID: 6444634
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  • 17. Reaction mechanism of (Ca2+, Mg2+)-ATPase of sarcoplasmic reticulum vesicles. I. Phosphoenzyme with bound Ca2+ which is exposed to the external medium.
    Takakuwa Y, Kanazawa T.
    J Biol Chem; 1981 Mar 25; 256(6):2691-5. PubMed ID: 6110658
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