Enzyme Kinetics: Catalysis and Control

Enzyme Kinetics: Catalysis and Control PDF

Author: Daniel L. Purich

Publisher: Elsevier

Published: 2010-06-16

Total Pages: 915

ISBN-13: 0123809258

DOWNLOAD EBOOK →

Far more than a comprehensive treatise on initial-rate and fast-reaction kinetics, this one-of-a-kind desk reference places enzyme science in the fuller context of the organic, inorganic, and physical chemical processes occurring within enzyme active sites. Drawing on 2600 references, Enzyme Kinetics: Catalysis & Control develops all the kinetic tools needed to define enzyme catalysis, spanning the entire spectrum (from the basics of chemical kinetics and practical advice on rate measurement, to the very latest work on single-molecule kinetics and mechanoenzyme force generation), while also focusing on the persuasive power of kinetic isotope effects, the design of high-potency drugs, and the behavior of regulatory enzymes. Historical analysis of kinetic principles including advanced enzyme science Provides both theoretical and practical measurements tools Coverage of single molecular kinetics Examination of force generation mechanisms Discussion of organic and inorganic enzyme reactions

Enzyme Catalysis and Control

Enzyme Catalysis and Control PDF

Author: Marlene Deluca

Publisher: Elsevier

Published: 2014-06-28

Total Pages: 536

ISBN-13: 148321723X

DOWNLOAD EBOOK →

Current Topics in Cellular Regulation: Volume 24, Enzyme Catalysis and Control is a compendium of papers that discusses phosphoryl transfer reactions, the role of water on the free energy of hydrolysis of pyrophosphate, and the hormonal actions of vitamin D. Other papers describe the regulation lipid metabolism by a lipid-carrying protein, the GABA, and taurine enzymes in mammalian brain. One paper examines the role of vitamin D in the metabolism of cells, as well as in the whole animal. Upon absorption in the body, the vitamin undergoes various metabolic transformations before interacting with specific receptors, and then inducting the genome in the target tissues to generate biological and hormonal responses. Another paper notes the possibility of a genetic defect in cancer cells that results in the abnormal accumulation of sterol carrier protein (SCP) and cholesterol in vivo; and also in the inability to maintain levels of SCP or cholesterol in vitro. One paper shows that tartrate, or other organic acids, secreted into the medium by the penicillia keeps the pH in an optimal range for acid protease degradation of proteins and glycoproteins. This mechanism helps the fungus to survive in a nutrient environment (which is unbalanced with respect to an optimum C/N ratio and at a pH unfavorable to many bacteria and other life forms). Another paper proposes a model for the modulation of ATP synthetase activities and medium exchange reactions by energy input, substrate concentration, or others that affect the microenvironment of the enzyme under certain conditions. The compendium will prove beneficial to molecular biologists, general biologists, microbiologists, and biochemists.

Enzyme Kinetics

Enzyme Kinetics PDF

Author: Daniel L. Purich

Publisher: Elsevier Science & Technology

Published: 2010

Total Pages: 0

ISBN-13: 9786612737961

DOWNLOAD EBOOK →

Far more than a comprehensive treatise on initial-rate and fast-reaction kinetics, this one-of-a-kind desk reference places enzyme science in the fuller context of the organic, inorganic, and physical chemical processes occurring within enzyme active sites. Drawing on 2600 references, Enzyme Kinetics: Catalysis & Control develops all the kinetic tools needed to define enzyme catalysis, spanning the entire spectrum (from the basics of chemical kinetics and practical advice on rate measurement, to the very latest work on single-molecule kinetics and mechanoenzyme force generation), while also focusing on the persuasive power of kinetic isotope effects, the design of high-potency drugs, and the behavior of regulatory enzymes. - Historical analysis of kinetic principles including advanced enzyme science - Provides both theoretical and practical measurements tools - Coverage of single molecular kinetics - Examination of force generation mechanisms - Discussion of organic and inorganic enzyme reactions

Mechanisms of Catalysis

Mechanisms of Catalysis PDF

Author:

Publisher: Academic Press

Published: 1991-01-28

Total Pages: 459

ISBN-13: 9780080865966

DOWNLOAD EBOOK →

The remarkable expansion of information leading to a deeper understanding of enzymes on the molecular level necessitated the development of this volume which not only introduces new topics to The Enzymes series but presents new information on some covered in Volume I and II of this edition.

Chemistry and Control of Enzyme Reactions

Chemistry and Control of Enzyme Reactions PDF

Author: K. G. Scrimgeour

Publisher:

Published: 1977

Total Pages: 666

ISBN-13:

DOWNLOAD EBOOK →

Enzyme structure. Isolation of enzymes. Reaction mechanisms. Enzyme kinetics. Theories of enzyme catalysis. Examples of enzyme catalysis. Enzymes without prosthetic groups. Coenzymes. Protein coenzymes. Covalent catalysis. Metals and enzymes. Control. Quaternary structure and allosteric control. Regulated enzyme reactions. Physical organization of enzymes. Chemotherapeutic control of enzyme reactions. Complex allosteric control systems.

Nanozymes: Next Wave of Artificial Enzymes

Nanozymes: Next Wave of Artificial Enzymes PDF

Author: Xiaoyu Wang

Publisher: Springer

Published: 2016-07-27

Total Pages: 134

ISBN-13: 3662530686

DOWNLOAD EBOOK →

This book describes the fundamental concepts, the latest developments and the outlook of the field of nanozymes (i.e., the catalytic nanomaterials with enzymatic characteristics). As one of today’s most exciting fields, nanozyme research lies at the interface of chemistry, biology, materials science and nanotechnology. Each of the book’s six chapters explores advances in nanozymes. Following an introduction to the rise of nanozymes research in the course of research on natural enzymes and artificial enzymes in Chapter 1, Chapters 2 through 5 discuss different nanomaterials used to mimic various natural enzymes, from carbon-based and metal-based nanomaterials to metal oxide-based nanomaterials and other nanomaterials. In each of these chapters, the nanomaterials’ enzyme mimetic activities, catalytic mechanisms and key applications are covered. In closing, Chapter 6 addresses the current challenges and outlines further directions for nanozymes. Presenting extensive information on nanozymes and supplemented with a wealth of color illustrations and tables, the book offers an ideal guide for readers from disparate areas, including analytical chemistry, materials science, nanoscience and nanotechnology, biomedical and clinical engineering, environmental science and engineering, green chemistry, and novel catalysis.