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Book
Iron-sulfur clusters in chemistry and biology
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ISBN: 3110478552 9783110480443 3110480441 9783110478501 3110478501 9783110478556 9783110480436 3110480433 Year: 2017 Publisher: Berlin, [Germany] ; Boston, [Massachusetts] : De Gruyter,

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This volume on iron-sulfur proteins includes chapters that describe the initial discovery of iron-sulfur proteins in the 1960s to elucidation of the roles of iron sulfur clusters as prosthetic groups of enzymes, such as the citric acid cycle enzyme, aconitase, and numerous other proteins, ranging from nitrogenase to DNA repair proteins. The capacity of iron sulfur clusters to accept and delocalize single electrons is explained by basic chemical principles, which illustrate why iron sulfur proteins are uniquely suitable for electron transport and other activities. Techniques used for detection and stabilization of iron-sulfur clusters, including EPR and Mossbauer spectroscopies, are discussed because they are important for characterizing unrecognized and elusive iron sulfur proteins. Recent insights into how nitrogenase works have arisen from multiple advances, described here, including studies of high-resolution crystal structures.


Book
Iron-sulfur clusters in chemisy and biology.
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ISBN: 9783110479867 3110479869 9783110479393 Year: 2017 Publisher: Berlin

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Digital
Iron-Sulfur Clusters in Chemistry and Biology. . Volume 1, : Characterization, Properties and Applications

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Digital
Iron-Sulfur Clusters in Chemistry and Biology. . Volume 2, : Biochemistry, Biosynthesis and Human Diseases
Authors: --- --- --- --- --- et al.
ISBN: 9783110479850 9783110479522 9783110479393 Year: 2017 Publisher: Berlin ;; Boston De Gruyter

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Book
Iron-Sulfur Clusters in Chemistry and Biology
Authors: --- --- --- --- --- et al.
ISBN: 1523100583 3110378264 3110308428 9783110308433 3110308436 9783110308426 9781523100583 9783110308327 3110308320 9783110378269 Year: 2014 Publisher: Berlin Boston

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Abstract

This volume on iron-sulfur proteins includes chapters that describe the initial discovery of iron-sulfur proteins in the 1960's to elucidation of the roles of iron sulfur clusters as prosthetic groups of enzymes, such as the citric acid cycle enzyme, aconitase, and numerous other proteins, ranging from nitrogenase to DNA repair proteins. The capacity of iron sulfur clusters to accept and delocalize single electrons is explained by basic chemical principles, which illustrate why iron sulfur proteins are uniquely suitable for electron transport and other activities. Techniques used for detection and stabilization of iron-sulfur clusters, including EPR and Mossbauer spectroscopies, are discussed because they are important for characterizing unrecognized and elusive iron sulfur proteins. Recent insights into how nitrogenase works have arisen from multiple advances, described here, including studies of high-resolution crystal structures. Numerous chapters 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.


Digital
Iron-Sulfur Clusters in Chemistry and Biology
Authors: --- --- --- --- --- et al.
ISBN: 9783110308426 9783110308327 Year: 2014 Publisher: Berlin ;; Boston De Gruyter

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