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Journal Abstract Search


342 related items for PubMed ID: 15848762

  • 1. Mutation of surface cysteine 374 to alanine in monoamine oxidase A alters substrate turnover and inactivation by cyclopropylamines.
    Vintém AP, Price NT, Silverman RB, Ramsay RR.
    Bioorg Med Chem; 2005 May 16; 13(10):3487-95. PubMed ID: 15848762
    [Abstract] [Full Text] [Related]

  • 2. Alteration in spectral properties on ligand binding reveals flexibility in monoamine oxidase.
    Ramsay RR, Jones TZ, Hynson RM.
    Med Sci Monit; 2005 Sep 16; 11(9):SR15-20. PubMed ID: 16127378
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  • 3. Functional role of the "aromatic cage" in human monoamine oxidase B: structures and catalytic properties of Tyr435 mutant proteins.
    Li M, Binda C, Mattevi A, Edmondson DE.
    Biochemistry; 2006 Apr 18; 45(15):4775-84. PubMed ID: 16605246
    [Abstract] [Full Text] [Related]

  • 4. Inactivation of monoamine oxidase A by the monoamine oxidase B inactivators 1-phenylcyclopropylamine, 1-benzylcyclopropylamine, and N-cyclopropyl-alpha-methylbenzylamine.
    Silverman RB, Hiebert CK.
    Biochemistry; 1988 Nov 01; 27(22):8448-53. PubMed ID: 3242595
    [Abstract] [Full Text] [Related]

  • 5. Loss of serotonin oxidation as a component of the altered substrate specificity in the Y444F mutant of recombinant human liver MAO A.
    Nandigama RK, Miller JR, Edmondson DE.
    Biochemistry; 2001 Dec 11; 40(49):14839-46. PubMed ID: 11732903
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  • 8. cis-Cyclopropylamines as mechanism-based inhibitors of monoamine oxidases.
    Malcomson T, Yelekci K, Borrello MT, Ganesan A, Semina E, De Kimpe N, Mangelinckx S, Ramsay RR.
    FEBS J; 2015 Aug 11; 282(16):3190-8. PubMed ID: 25755053
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  • 10. Inactivation of purified human recombinant monoamine oxidases A and B by rasagiline and its analogues.
    Hubálek F, Binda C, Li M, Herzig Y, Sterling J, Youdim MB, Mattevi A, Edmondson DE.
    J Med Chem; 2004 Mar 25; 47(7):1760-6. PubMed ID: 15027867
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  • 12. Mechanism of inactivation of monoamine oxidase by 1-phenylcyclopropylamine.
    Silverman RB, Zieske PA.
    Biochemistry; 1985 Apr 23; 24(9):2128-38. PubMed ID: 3995007
    [Abstract] [Full Text] [Related]

  • 13. Deuterium isotope effect studies on the MAO-B catalyzed oxidation of 4-benzyl-1-cyclopropyl-1,2,3,6-tetrahydropyridine.
    Anderson AH, Kuttab S, Castagnoli N.
    Biochemistry; 1996 Mar 12; 35(10):3335-40. PubMed ID: 8605171
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  • 14. Fluorinated phenylcyclopropylamines. Part 4: effects of aryl substituents and stereochemistry on the inhibition of monoamine oxidases by 1-aryl-2-fluoro-cyclopropylamines.
    Ye S, Yoshida S, Fröhlich R, Haufe G, Kirk KL.
    Bioorg Med Chem; 2005 Apr 01; 13(7):2489-99. PubMed ID: 15755651
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  • 16. Synthesis and monoamine oxidase B catalyzed oxidation of C-4 heteroaromatic substituted 1,2,3,6-tetrahydropyridine derivatives.
    Nimkar SK, Anderson AH, Rimoldi JM, Stanton M, Castagnoli KP, Mabic S, Wang YX, Castagnoli N.
    Chem Res Toxicol; 1996 Sep 01; 9(6):1013-22. PubMed ID: 8870990
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  • 17. [Mechanistic study of monoamine oxidase: significance for MAO A and MAO B in situ].
    Ramsay RR.
    Vopr Med Khim; 1997 Sep 01; 43(6):457-70. PubMed ID: 9503563
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  • 19. Deuterium isotope effects for the oxidation of 1-methyl-3-phenyl-3-pyrrolinyl analogues by monoamine oxidase B.
    Pretorius A, Ogunrombi MO, Terre'blanche G, Castagnoli N, Bergh JJ, Petzer JP.
    Bioorg Med Chem; 2008 Oct 01; 16(19):8813-7. PubMed ID: 18799315
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  • 20. Alanine scanning mutagenesis of the testosterone binding site of rat 3 alpha-hydroxysteroid dehydrogenase demonstrates contact residues influence the rate-determining step.
    Heredia VV, Cooper WC, Kruger RG, Jin Y, Penning TM.
    Biochemistry; 2004 May 18; 43(19):5832-41. PubMed ID: 15134457
    [Abstract] [Full Text] [Related]


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