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Journal Abstract Search


140 related items for PubMed ID: 11076535

  • 1. Catalytically important ionizations along the reaction pathway of yeast pyrophosphatase.
    Belogurov GA, Fabrichniy IP, Pohjanjoki P, Kasho VN, Lehtihuhta E, Turkina MV, Cooperman BS, Goldman A, Baykov AA, Lahti R.
    Biochemistry; 2000 Nov 14; 39(45):13931-8. PubMed ID: 11076535
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  • 2. Fluoride effects along the reaction pathway of pyrophosphatase: evidence for a second enzyme.pyrophosphate intermediate.
    Baykov AA, Fabrichniy IP, Pohjanjoki P, Zyryanov AB, Lahti R.
    Biochemistry; 2000 Oct 03; 39(39):11939-47. PubMed ID: 11009607
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  • 3. Probing essential water in yeast pyrophosphatase by directed mutagenesis and fluoride inhibition measurements.
    Pohjanjoki P, Fabrichniy IP, Kasho VN, Cooperman BS, Goldman A, Baykov AA, Lahti R.
    J Biol Chem; 2001 Jan 05; 276(1):434-41. PubMed ID: 11031269
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  • 4. Two pathways of pyrophosphate hydrolysis and synthesis by yeast inorganic pyrophosphatase.
    Baykov AA, Shestakov AS.
    Eur J Biochem; 1992 Jun 01; 206(2):463-70. PubMed ID: 1317797
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  • 5. Rates of elementary catalytic steps for different metal forms of the family II pyrophosphatase from Streptococcus gordonii.
    Zyryanov AB, Vener AV, Salminen A, Goldman A, Lahti R, Baykov AA.
    Biochemistry; 2004 Feb 03; 43(4):1065-74. PubMed ID: 14744152
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  • 6. Single-turnover kinetics of Saccharomyces cerevisiae inorganic pyrophosphatase.
    Halonen P, Baykov AA, Goldman A, Lahti R, Cooperman BS.
    Biochemistry; 2002 Oct 08; 41(40):12025-31. PubMed ID: 12356302
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  • 8. The structural basis for pyrophosphatase catalysis.
    Heikinheimo P, Lehtonen J, Baykov A, Lahti R, Cooperman BS, Goldman A.
    Structure; 1996 Dec 15; 4(12):1491-508. PubMed ID: 8994974
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  • 11. Hydrolysis of adenosine triphosphate by crystalline yeast pyrophosphatase. Effect of zinc and magnesium ions.
    KUNITZ M.
    J Gen Physiol; 1962 Mar 15; 45(4)Pt 2(4):31-46. PubMed ID: 14460583
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  • 13. Activation of yeast inorganic pyrophosphatase by magnesium.
    Braga E, Avaeva S.
    Biochem Biophys Res Commun; 1972 Oct 17; 49(2):528-35. PubMed ID: 4344893
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  • 14. Effect of E20D substitution in the active site of Escherichia coli inorganic pyrophosphatase on its quaternary structure and catalytic properties.
    Volk SE, Dudarenkov VY, Käpylä J, Kasho VN, Voloshina OA, Salminen T, Goldman A, Lahti R, Baykov AA, Cooperman BS.
    Biochemistry; 1996 Apr 16; 35(15):4662-9. PubMed ID: 8664255
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  • 18. mu-Monothiopyrophosphate as a substrate for inorganic pyrophosphatase and UDP-glucose pyrophosphorylase.
    Lightcap ES, Frey PA.
    Arch Biochem Biophys; 1996 Nov 01; 335(1):183-90. PubMed ID: 8914849
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  • 19. [The effect of pH on the kinetics of pyrophosphate hydrolysis by baker's yeast inorganic pyrophosphatase].
    Baĭkov AA, Romanov LV, Avaeva SM.
    Biokhimiia; 1973 Nov 01; 38(3):478-84. PubMed ID: 4360787
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  • 20. Catalytic specificity of yeast inorganic pyrophosphatase for magnesium ion as cofactor. An analysis of divalent metal ion and solvent isotope effects on enzyme function.
    Welsh KM, Jacobyansky A, Springs B, Cooperman BS.
    Biochemistry; 1983 Apr 26; 22(9):2243-8. PubMed ID: 6134551
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