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Energetics of biological macromolecules. Part C [electronic resource] / edited by Michael L. Johnson ; Gary K. Ackers.

Contributor(s): Johnson, Michael L, 1947- | Ackers, Gary KMaterial type: TextTextSeries: Methods in enzymology ; v. 323.Publication details: San Diego, CA : Academic Press, c2000. Description: 1 online resource (xxxv, 545 p.) : ill. (some col.)ISBN: 9780080496788 (electronic bk.); 0080496784 (electronic bk.); 0121822249 (electronic bk.); 9780121822248 (electronic bk.)Subject(s): Macromolecules | Bioenergetics | Thermodynamics | Macromolecular Systems | Energy Metabolism | Thermodynamics | Macromol�ecules | Bio�energ�etique | Thermodynamique | SCIENCE -- Life Sciences -- Biochemistry | Bioenergetics | Macromolecules | ThermodynamicsGenre/Form: Electronic books.Additional physical formats: Print version:: Energetics of biological macromolecules. Part C.DDC classification: 572/.7 LOC classification: QP601 | .M49eb vol. 323Online resources: ScienceDirect | ScienceDirect
Contents:
Front Cover; Energetics of Biological Macromolecules; Copyright Page; Table of Contents; Contributors to Volume; Preface; Volumes in Series; Chapter 1. Quantitative Dissection of Transcriptional Control System: N-Dependent Antitermination Complex of Phage ? as Regulat; Chapter 2. Problems and Prospects in Microcalorimetry of Biological Macromolecules; Chapter 3. Probing Stability of Helical Transmembrane Proteins; Chapter 4. Energetics of Vinca Alkaloid Interactions with Tubulin; Chapter 5. Kinetics and Thermodynamics of Conformational Equilibria in Native Proteins by Hydrogen Exchange
Summary: Volume 323 of Methods in Enzymology is dedicated to the energetics of biological macromolecules. Understanding the molecular mechanisms underlying a biological process requires detailed knowledge of the structural relationships within the system and an equally detailed understanding of the energetic driving forces that control the structural interactions. This volume presents modern thermodynamic techniques currently being utilized to study the energetic driving forces in biological systems. It will be a useful reference source and textbook for scientists and students whose goal is to understa.
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Includes list of errata on p. 545.

Includes bibliographical references and indexes.

Description based on print version record.

Front Cover; Energetics of Biological Macromolecules; Copyright Page; Table of Contents; Contributors to Volume; Preface; Volumes in Series; Chapter 1. Quantitative Dissection of Transcriptional Control System: N-Dependent Antitermination Complex of Phage ? as Regulat; Chapter 2. Problems and Prospects in Microcalorimetry of Biological Macromolecules; Chapter 3. Probing Stability of Helical Transmembrane Proteins; Chapter 4. Energetics of Vinca Alkaloid Interactions with Tubulin; Chapter 5. Kinetics and Thermodynamics of Conformational Equilibria in Native Proteins by Hydrogen Exchange

Volume 323 of Methods in Enzymology is dedicated to the energetics of biological macromolecules. Understanding the molecular mechanisms underlying a biological process requires detailed knowledge of the structural relationships within the system and an equally detailed understanding of the energetic driving forces that control the structural interactions. This volume presents modern thermodynamic techniques currently being utilized to study the energetic driving forces in biological systems. It will be a useful reference source and textbook for scientists and students whose goal is to understa.

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