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116 related items for PubMed ID: 1002668

  • 1. Kinetic study of alpha-chymotrypsin catalysis with regard to the interaction between the specificity-determining site and the aromatic side chain of substrates.
    Ohno M, Sato S, Karasaki Y, Tsukamoto S.
    J Biochem; 1976 Aug; 80(2):239-51. PubMed ID: 1002668
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  • 2. alpha-Chymotryptic hydrolysis of derivatives of the specific substrates with substituents in the nucleus.
    Ohno M, Sato S, Mizoguchi H, Tsukamoto S.
    J Biochem; 1975 Jun; 77(6):1341-3. PubMed ID: 5406
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  • 3. Kinetic specificities of BPN' and Carlsberg subtilisins. Mapping the aromatic binding site.
    Karasaki Y, Ohno M.
    J Biochem; 1978 Sep; 84(3):531-8. PubMed ID: 102640
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  • 4. The effect of side chain structure of ester substrates in determining the rate-controlling step in alpha-chymotrypsin-catalyzed hydrolysis.
    Ohno M, Karasaki Y.
    J Biochem; 1979 Nov; 86(5):1269-74. PubMed ID: 574866
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  • 5. Interactions of alpha-chymotrypsin with peptides containing tryptophan or its derivatives at the C-terminus.
    Sato S, Karasaki Y, Ohno M.
    J Biochem; 1977 Jul; 82(1):231-7. PubMed ID: 19455
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  • 6. Kinetic investigation of the alpha-chymotrypsin-catalyzed hydrolysis of peptide-ester substrates. The relationship between the structure of the peptide moiety and reactivity.
    Bizzozero SA, Baumann WK, Dutler H.
    Eur J Biochem; 1975 Oct 01; 58(1):167-76. PubMed ID: 1183433
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  • 7. Active centre studies on bovine pancreatic chymotrypsin with tripeptidyl-p-nitroanilide substrates.
    Tözsér J, Szabó G, Pozsgay M, Aurell L, Elödi P.
    Acta Biochim Biophys Hung; 1986 Oct 01; 21(4):335-48. PubMed ID: 3109178
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  • 8. Substituent effects on substrate activation and Michaelis-Menten Kinetic parameters in the alpha-chymotrypsin-catalyzed hydrolysis of phenyl acetates.
    Shimamoto N, Fukutome H.
    J Biochem; 1975 Oct 01; 78(4):663-71. PubMed ID: 1213984
    [Abstract] [Full Text] [Related]

  • 9. The interaction of the fluorescent probe 1-anilinonaphthalene-8-sulfonate with Carlsberg subtilisin.
    Karasaki Y, Ohno M.
    J Biochem; 1980 Apr 01; 87(4):1235-41. PubMed ID: 6993456
    [Abstract] [Full Text] [Related]

  • 10. The second nucleophile molecule binds to the acyl-enzyme-nucleophile complex in alpha-chymotrypsin catalysis. Kinetic evidence for the interaction.
    Gololobov MY, Stepanov VM, Voyushina TL, Adlercreutz P.
    Eur J Biochem; 1993 Nov 01; 217(3):955-63. PubMed ID: 8223653
    [Abstract] [Full Text] [Related]

  • 11. Interactions of alpha-chymotrypsin and Carlsberg subtilisin with methyl N alpha-acetyl-2-(alkylthio)-L-tryptophanoates.
    Yoshizumi K, Kamiyama K, Shieh TC, Tanaka S, Ohno M.
    J Biochem; 1986 Nov 01; 100(5):1201-6. PubMed ID: 3546277
    [Abstract] [Full Text] [Related]

  • 12. The active centers of Streptomyces griseus protease 3, alpha-chymotrypsin, and elastase: enzyme-substrate interactions close to the scissile bond.
    Bauer CA, Thompson RC, Blout ER.
    Biochemistry; 1976 Mar 23; 15(6):1296-9. PubMed ID: 814925
    [Abstract] [Full Text] [Related]

  • 13. Kinetic investigation of the alpha-chymotrypsin-catalyzed hydrolysis of peptide substrates. The relationship between the peptide structure C-terminal to the cleaved bond and reactivity.
    Bizzozero SA, Baumann WK, Dutler H.
    Eur J Biochem; 1982 Feb 23; 122(2):251-8. PubMed ID: 7060575
    [Abstract] [Full Text] [Related]

  • 14. Specificity of trypsin and alpha-chymotrypsin towards neutral substrates.
    Vajda T, Szabó T.
    Acta Biochim Biophys Acad Sci Hung; 1976 Feb 23; 11(4):287-94. PubMed ID: 1026004
    [Abstract] [Full Text] [Related]

  • 15. Specific inhibitory conformation of dipeptides for chymotrypsin.
    Shimohigashi Y, Ogawa T, Kodama H, Sakamoto H, Yoshitomi H, Waki M, Ohno M.
    Biochem Biophys Res Commun; 1990 Feb 14; 166(3):1460-6. PubMed ID: 2306257
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