The Enzyme Reference

A Comprehensive Guidebook to Enzyme Nomenclature, Reactions, and Methods

Nonfiction, Science & Nature, Science, Biological Sciences, Biochemistry
Cover of the book The Enzyme Reference by Daniel L. Purich, R. Donald Allison, Elsevier Science
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Author: Daniel L. Purich, R. Donald Allison ISBN: 9780080550817
Publisher: Elsevier Science Publication: January 4, 2003
Imprint: Academic Press Language: English
Author: Daniel L. Purich, R. Donald Allison
ISBN: 9780080550817
Publisher: Elsevier Science
Publication: January 4, 2003
Imprint: Academic Press
Language: English

The aim of this work is to provide a fuller spectrum of information in a single source on enzyme-catalyzed reactions than is currently available in any published reference work or as part of any Internet database. The Enzyme Reference: A Comprehensive Guidebook to Enzyme Nomenclature, Reactions, and Methods includes 20,000 review articles and seminal research papers. Additionally, it provides a novel treatment of so-called ATPase and GTPase reactions to account for the noncovalent substratelike and productlike states of molecular motors, elongation factors, transporters, DNA helicases, G-reulatory proteins, and other energases.

  • Includes a compendium of over 6,000 enzyme reactions (including enzyme commission numbers, alternative names, substrates, products, alternative substrates, and properties)
  • Covers over 900 chemical structures of key metabolites and cofactors
  • Index directs readers to the exact pages for over 9,500 enzyme names
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The aim of this work is to provide a fuller spectrum of information in a single source on enzyme-catalyzed reactions than is currently available in any published reference work or as part of any Internet database. The Enzyme Reference: A Comprehensive Guidebook to Enzyme Nomenclature, Reactions, and Methods includes 20,000 review articles and seminal research papers. Additionally, it provides a novel treatment of so-called ATPase and GTPase reactions to account for the noncovalent substratelike and productlike states of molecular motors, elongation factors, transporters, DNA helicases, G-reulatory proteins, and other energases.

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