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PUBMED FOR HANDHELDS

Journal Abstract Search


356 related items for PubMed ID: 189795

  • 21. Substrate selection by RNA polymerase from E. coli. The role of ribose and 5'-triphosphate fragments, and nucleotides interaction.
    Szafrański P, Smagowicz WJ, Wierzchowski KL.
    Acta Biochim Pol; 1985; 32(4):329-49. PubMed ID: 3938589
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  • 22. Kinetic and magnetic resonance studies of effects of genetic substitution of a Ca2+-liganding amino acid in staphylococcal nuclease.
    Serpersu EH, Shortle D, Mildvan AS.
    Biochemistry; 1986 Jan 14; 25(1):68-77. PubMed ID: 3513826
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  • 23. Electron paramagnetic resonance spectroscopic measurement of Mn2+ binding affinities to the hammerhead ribozyme and correlation with cleavage activity.
    Horton TE, Clardy DR, DeRose VJ.
    Biochemistry; 1998 Dec 22; 37(51):18094-101. PubMed ID: 9922178
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  • 26. [Interaction of RNA polymerase of Escherichia coli with substrate by affinity labeling and NMR with nuclear 31P].
    Slepneva IA, Vaĭner LM.
    Mol Biol (Mosk); 1982 Dec 22; 16(4):763-70. PubMed ID: 6750360
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  • 30. Structural studies on the active site of Escherichia coli RNA polymerase. 1. Interaction of metals on the i and i + 1 sites.
    Chuknyisky PP, Rifkind JM, Tarien E, Beal RB, Eichhorn GL.
    Biochemistry; 1990 Jun 26; 29(25):5987-94. PubMed ID: 2166569
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  • 31. Chromium(III)-adenosine triphosphate as a paramagnetic probe to determine intersubstrate distances on pyruvate kinase. Detection of an active enzyme-metal-ATP-metal complex.
    Gupta RK, Fung CH, Mildvan AS.
    J Biol Chem; 1976 Apr 25; 251(8):2421-30. PubMed ID: 177415
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  • 32. Mn2(+)-binding properties of a recombinant protein-tyrosine kinase derived from the human insulin receptor.
    Wente SR, Villalba M, Schramm VL, Rosen OM.
    Proc Natl Acad Sci U S A; 1990 Apr 25; 87(7):2805-9. PubMed ID: 2157215
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  • 33. 1H and 31P nuclear magnetic resonance and kinetic studies of the active site structure of chloroplast CF1 ATP synthase.
    Devlin CC, Grisham CM.
    Biochemistry; 1990 Jul 03; 29(26):6192-203. PubMed ID: 2145032
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  • 34. Mechanism of ribonucleic acid chain initiation. 1. A non-steady-state study of ribonucleic acid synthesis without enzyme turnover.
    Shimamoto N, Wu CW.
    Biochemistry; 1980 Mar 04; 19(5):842-8. PubMed ID: 6153531
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  • 37. Direct coordination of nucleotide with the intrinsic metal in Escherichia coli RNA polymerase. A nuclear magnetic resonance study with cobalt-substituted enzyme.
    Chatterji D, Wu FY.
    Biochemistry; 1982 Sep 14; 21(19):4657-64. PubMed ID: 6753923
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  • 38. Magnetic resonance studies of the spatial arrangement of glucose-6-phosphate and chromium (III)-adenosine diphosphate at the catalytic site of hexokinase.
    Petersen RL, Gupta BK.
    Biophys J; 1979 Jul 14; 27(1):1-14. PubMed ID: 233578
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  • 39. 1H nuclear magnetic resonance studies of the conformation of an ATP analogue at the active site of Na,K-ATPase from kidney medulla.
    Stewart JM, Grisham CM.
    Biochemistry; 1988 Jun 28; 27(13):4840-8. PubMed ID: 2844241
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  • 40. Investigations of equilibrium complexes of myoxin subfragment 1 with the manganous ion and adenosine diphosphate using magnetic resonance techniques.
    Bagshow CR, Reed GH.
    J Biol Chem; 1976 Apr 10; 251(7):1975-83. PubMed ID: 178650
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