Mechanisms of catalysis
Author(s)
Bibliographic Information
Mechanisms of catalysis
(The enzymes / edited by Paul D. Boyer, Edwin G. Krebs, v. 19-20)
Academic Press, c1990-c1992
3rd ed
- [1]
- [2]
Available at / 52 libraries
-
Science and Technology Library, Kyushu University
[1]452/B/19068252190011343,
[2]452/B/20068252192008503 -
Kobe University Library for Science and Technology
464-5-12//19h039000006214*,
[2]464-5-12//20S030309203576* -
National Institutes of Natural Sciences Okazaki Library and Information Center図
[1]464.5/En/199216026212
-
University Library for Agricultural and Life Sciences, The University of Tokyo図
[1]464.5:E64:3rd ed-195019160075,
[2]464.5:E64:3rd ed-205019360287,5019160075 -
University Library for Agricultural and Life Sciences, The University of Tokyo講座
[1]5019163913,
[2]5019263705 -
Nihon University School of Medicine
[1]464.5||B 69||19 '70K30000035750,
[2]464.5||B 69||20 '70K30000035761 -
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Note
[1] edited by David S. Sigman, Paul D. Boyer
[2] edited by David S. Sigman
Includes bibliographical references and indexes
Description and Table of Contents
- Volume
-
[1] ISBN 9780121227197
Description
Table of Contents
- Binding energy and catalysis, D.D.Hackney
- biological electron transfer, D.C.Rees and D.Farrelly
- steady-state kinetics, W.W.Cleland
- analysis of protein function by mutagenesis, K.A.Johnson and S.J.Benkovic
- mechanism-based (suicide) enzyme inactivation, M.A.Ator and P.R.Ortiz de Montellano
- site-specific modification of enzyme sites, R.F.Colman
- stereochemistry of enzyme-catalyzed reactions at carbon, D.J.Creighton and N.S.R.K.Murthy.
- Volume
-
[2] ISBN 9780121227203
Description
Table of Contents
- Transient-state kinetic analysis of enzyme reaction pathways, K.A. Johnson
- metal ions at enzyme active sites, J.J. Villafranca and T. Nowak
- phosphate ester hydrolysis, J.A. Gerlt
- nucleotidyltransferases and phosphotransferases - stereochemistry and covalent intermediates, P.A. Frey
- glycosadases and glycosyltransferases, G. Mooser
- catalytic strategies in enzymic carboxylation and decarboxylation, M.H. O'Leary
- mechanisms of enzymic carbon-carbon bond formation and cleavage, R. Kluger
- enzymic-free radical mechanisms, E.J. Brush and J.W. Kozarich
- molecular mechanism of oxygen activation by P-450, Y. Watanabe and J.T. Groves
- mechanism of NAD-dependent enzymes, N.J. Oppenheimer and A.L. Handlon.
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