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Iron-Sulfur Clusters in Chemistry and Biology. . Volume 2, Biochemistry, Biosynthesis and Human Diseases / / Tracey Rouault



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Titolo: Iron-Sulfur Clusters in Chemistry and Biology. . Volume 2, Biochemistry, Biosynthesis and Human Diseases / / Tracey Rouault Visualizza cluster
Pubblicazione: Berlin ; ; Boston : , : De Gruyter, , [2017]
©2017
Edizione: 2. Aufl.
Descrizione fisica: 1 online resource (492 pages) : illustrations
Disciplina: 574.19245
Soggetto topico: Iron-sulfur proteins
Soggetto non controllato: Biochemistry
Bioinorganic Chemistry
Iron-sulfur Clusters
Altri autori: AdamsMichael W.W  
BoydEric S  
BroderickJoan B  
DancisAndy  
DeanDennis  
Dos SantosPatricia  
GariKerstin  
KileyPatricia  
LeimkühlerSilke  
LillRoland  
MaioNunziata  
MettertErin L  
OuttenCaryn  
OuttenWayne  
PetersJohn  
ShepardEric M  
TongWing Hang  
WohlschlegelJames  
YeHong  
Persona (resp. second.): RouaultTracey
Nota di bibliografia: Includes bibliographical references at the end of each chapters and index.
Nota di contenuto: Frontmatter -- Preface -- Tracey A. Rouault biography -- Contents -- List of contributing authors -- 1 A retrospective on the discovery of [Fe-S] cluster biosynthetic machineries in Azotobacter vinelandii / Dos Santos, Patricia C. / Dean, Dennis R. -- 2 The ISC system and the different facets of Fe-S biology in bacteria / Aussel, Laurent / Chareyre, Sylvia / Duverger, Yohann / Ezraty, Benjamin / Huguenot, Allison / Mandin, Pierre / Py, Béatrice / Zamarreno, Jordi / Barras, Frédéric -- 3 A stress-responsive Fe-S cluster biogenesis system in bacteria - the suf operon of Gammaproteobacteria / Outten, F. Wayne -- 4 Sensing the cellular Fe-S cluster demand: a structural, functional, and phylogenetic overview of Escherichia coli IscR / Mettert, Erin L. / Perna, Nicole T. / Kiley, Patricia J. -- 5 Fe-S assembly in Gram-positive bacteria / Dos Santos, Patricia C. -- 6 Fe-S cluster assembly and regulation in yeast / Pain, Debkumar / Dancis, Andrew -- 7 The role of Fe-S clusters in regulation of yeast iron homeostasis / Outten, Caryn E. -- 8 Biogenesis of Fe-S proteins in mammals / Rouault, Tracey -- 9 Delivery of iron-sulfur clusters to recipient proteins: the role of chaperone and cochaperone proteins / Maio, Nunziata / Rouault, Tracey A. -- 10 Iron-sulfur proteins and human diseases / Tong, Wing Hang -- 11 Friedreich ataxia / Knight, Simon A. B. / Wilson, Robert B. -- 12 Connecting the biosynthesis of the molybdenum cofactor, Fe-S clusters, and tRNA thiolation in humans / Leimkühler, Silke -- 13 Iron-sulphur proteins and genome stability / Gari, Kerstin -- 14 Eukaryotic iron-sulfur protein biogenesis and its role in maintaining genomic integrity / Lill, Roland / Uzarska, Marta A. / Wohlschlegel, James -- 15 DNA signaling by iron-sulfur cluster proteins / Bartels, Phillip L. / O'Brien, Elizabeth / Barton, Jacqueline K. -- 16 Iron-sulfur cluster assembly in plants / Ye, Hong -- 17 Origin and evolution of Fe-S proteins and enzymes / Boyd, Eric S. / Schut, Gerrit J. / Shepard, Eric M. / Broderick, Joan B. / Adams, Michael W. W. / Peters, John W. -- Index
Sommario/riassunto: This volume on iron-sulfur proteins includes chapters that discuss how microbes, plants, and animals synthesize these complex prosthetic groups, and why it is important to understand the chemistry and biogenesis of iron sulfur proteins. In addition to their vital importance in mitochondrial respiration, numerous iron sulfur proteins are important in maintenance of DNA integrity. Multiple rare human diseases with different clinical presentations are caused by mutations of genes in the iron sulfur cluster biogenesis pathway. Understanding iron sulfur proteins is important for understanding a rapidly expanding group of metabolic pathways important in all kingdoms of life, and for understanding processes ranging from nitrogen fixation to human disease.
Titolo autorizzato: Iron-Sulfur Clusters in Chemistry and Biology  Visualizza cluster
ISBN: 3-11-047952-4
3-11-047985-0
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910827825603321
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