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Journal Abstract Search


102 related items for PubMed ID: 518925

  • 1. NMR studies of primary and secondary sites of parvalbumins using the two paramagnetic probes Gd (III) and Mn (II).
    Cavé A, Daures MF, Parello J, Saint-Yves A, Sempere R.
    Biochimie; 1979; 61(7):755-65. PubMed ID: 518925
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  • 2. Metal requirements of a diadenosine pyrophosphatase from Bartonella bacilliformis: magnetic resonance and kinetic studies of the role of Mn2+.
    Conyers GB, Wu G, Bessman MJ, Mildvan AS.
    Biochemistry; 2000 Mar 07; 39(9):2347-54. PubMed ID: 10694402
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  • 4. Magnetic resonance studies on the mitochondrial divalent cation carrier.
    Case GD.
    Biochim Biophys Acta; 1975 Jan 14; 375(1):69-86. PubMed ID: 163099
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  • 5. Remarkable affinity and selectivity for Cs+ and uranyl (UO22+) binding to the manganese site of the apo-water oxidation complex of photosystem II.
    Ananyev GM, Murphy A, Abe Y, Dismukes GC.
    Biochemistry; 1999 Jun 01; 38(22):7200-9. PubMed ID: 10353831
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  • 6. Calcium binding proteins: optical stopped-flow and proton nuclear magnetic resonance studies of the binding of the lanthanide series of metal ions to parvalbumin.
    Corson DC, Williams TC, Sykes BD.
    Biochemistry; 1983 Dec 06; 22(25):5882-9. PubMed ID: 6661415
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  • 7. Metal ion binding to parvalbumin. A proton NMR study.
    Ragg E, Cavé A, Drakenberg T.
    Acta Chem Scand B; 1986 Dec 06; 40(1):6-14. PubMed ID: 3962552
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  • 8. Proton nuclear magnetic resonance determination of the sequential ytterbium replacement of calcium in carp parvalbumin.
    Lee L, Sykes BD.
    Biochemistry; 1981 Mar 03; 20(5):1156-62. PubMed ID: 7225322
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  • 9. NMR studies on parvalbumin phylogeny and ionic interactions.
    Cavé A, Saint-Yves A, Parello J, Swärd M, Thulin E, Lindman B.
    Mol Cell Biochem; 1982 May 14; 44(3):161-72. PubMed ID: 7110122
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  • 10. Metal-ion binding to parvalbumin. A 113Cd-n.m.r. study of the binding of different lanthanide ions.
    Drakenberg T, Swärd M, Cavé A, Parello J.
    Biochem J; 1985 May 01; 227(3):711-7. PubMed ID: 4004793
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  • 11. Metal ion binding properties of hen ovalbumin and S-ovalbumin: characterization of the metal ion binding site by 31P NMR and water proton relaxation rate enhancements.
    Goux WJ, Venkatasubramanian PN.
    Biochemistry; 1986 Jan 14; 25(1):84-94. PubMed ID: 3954996
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  • 12. Ionic interactions with parvalbumins. Crystal structure determination of pike 4.10 parvalbumin in four different ionic environments.
    Declercq JP, Tinant B, Parello J, Rambaud J.
    J Mol Biol; 1991 Aug 20; 220(4):1017-39. PubMed ID: 1880797
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  • 13. Kinetic and magnetic resonance studies of the role of metal ions in the mechanism of Escherichia coli GDP-mannose mannosyl hydrolase, an unusual nudix enzyme.
    Legler PM, Lee HC, Peisach J, Mildvan AS.
    Biochemistry; 2002 Apr 09; 41(14):4655-68. PubMed ID: 11926828
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  • 16. The environment of the high-affinity cation binding site on actin and the separation between cation and ATP sites as revealed by proton NMR and fluorescence spectroscopy.
    Barden JA, dos Remedios CG.
    J Biochem; 1984 Sep 09; 96(3):913-21. PubMed ID: 6501270
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  • 18. 1H NMR spectroscopic studies of calcium-binding proteins. 3. Solution conformations of rat apo-alpha-parvalbumin and metal-bound rat alpha-parvalbumin.
    Williams TC, Corson DC, Oikawa K, McCubbin WD, Kay CM, Sykes BD.
    Biochemistry; 1986 Apr 08; 25(7):1835-46. PubMed ID: 3707914
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  • 20. 13C and 113Cd NMR studies of the chelation of metal ions by the calcium binding protein parvalbumin.
    Bjornson ME, Corson DC, Sykes BD.
    J Inorg Biochem; 1985 Oct 08; 25(2):141-9. PubMed ID: 3932596
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