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Oxidases, Dehydrogenases and Related Systems


Oxidases, Dehydrogenases and Related Systems


1. Aufl.

von: Donald Becker, Claudia Binda, Eduardo Ceccarelli, Pimchai Chaiyen, Antonio J. Costa Filho, Bastian Daniel, Corinna Dully, Dale Edmondson, Paul Fitzpatrick, Giovanni Gadda, Sandro Ghisla, Niels Henrik Gregersen, Hisashi Hemmi, Rikke Katrine Jentoft Olsen, Jung-Ja Kim, Peter Macheroux, Andrea Mattevi, Milagros Medina, Maria Cristina Nonato, Steven Rokita, Marilyn Schuman Jorns, John J. Tanner, Colin Thorpe, Shiao-Chun Tu, Maria A. Vanoni, Silvia Wallner, Thanyaporn Wongnate

CHF 224.35

Verlag: De Gruyter
Format: PDF
Veröffentl.: 21.12.2012
ISBN/EAN: 9783110268911
Sprache: englisch
Anzahl Seiten: 372

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Beschreibungen

<p>The dynamic field of flavin and flavoprotein biochemistry has seen rapid advancement in recent years. This comprehensive two volume set provides an overview of all aspects of contemporary research in this important class of enzymes. Topics treated include flavoproteins involved in energy generation, signal transduction and electron transfer (including respiration); oxygen activation by flavoproteins; the biology and biochemistry of complex flavoproteins; flavin and flavoprotein photochemistry/photophysics as well as biotechnological applications of flavoproteins. Recent developments in this field include new structures (including those of large membrane-integral electron transfer complexes containing FMN or FAD), elucidation of the role of flavoproteins in cell signalling pathways (including both phototaxis and the circadian cycle) and important new insights into the reaction mechanisms of flavin-containing enzymes. This volume focussing on oxidases, dehydrogenases and related systems is an essential reference for all researchers in biochemistry, chemistry, photochemistry and photophysics working on flavoenzymes.<br></p>
<p>I. Flavoproteins in Energy Generation<br> A. NADH dehydrogenase<br> B. Acyl-CoA dehydrogenases<br> C. Electron-transferring flavoprotein<br> D. Lipoamide dehydrogenase, glutathione reductase and other transhydrogenases<br> E. Succinate Dehydrogenase and fumarate reductase<br> F. Ferredoxin:NADP+ oxidoreductase<br>II. Complex Flavoproteins<br> A. Nitrate reductases<br> B. Xanthine oxidoreductase and related enzymes<br> C. Phthalate dioxygenase reductase<br> D. Cytochrome P-450 reductase<br> E. Flavocytochrome b2<br>III. Oxygen Activation by Flavoproteins<br> A. D-amino acid oxidase and related enzymes<br> B. Cholesterol oxidase<br> C. Flavin monooxygenases<br> D. Nitroreductases<br>IV. Flavin Amine Oxidases<br> A. Monoamine oxidases<br> B. Trimethylamine and dimethylamine dehydrogenases<br> C. Histone-lysine demethylases<br>V. Flavoproteins and Light<br> A. DNA photolyase<br> B. Plant blue-light receptor<br> C. Flavoproteins of the Circadian cycle<br> D. Luciferase and related systems<br>VI. The Chemistry of Flavins<br> A. Oxidation-reduction and electron transfer chemistry<br> B. Covalent modification of flavoproteins<br> C. Unconventional flavins in chemsitry and biology<br> D. Photophysics of flavins<br></p>
<p><strong>Russ Hille</strong>, University of California, Riverside, CA, USA; <strong>Susan Miller</strong>, University of California, San Francisco, CA, USA; <strong>Bruce Palfey</strong>, University of Michigan, Ann Arbor, MI, USA.</p>

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