basic principles, cellular regulation and engineering /
First Statement of Responsibility
edited by Matthias J. Feige.
.PUBLICATION, DISTRIBUTION, ETC
Place of Publication, Distribution, etc.
[Cambridge] :
Name of Publisher, Distributor, etc.
Royal Society of Chemistry,
Date of Publication, Distribution, etc.
[2018]
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
1 online resource
SERIES
Series Title
Chemical biology ;
Volume Designation
9
INTERNAL BIBLIOGRAPHIES/INDEXES NOTE
Text of Note
Includes bibliographical references and index.
CONTENTS NOTE
Text of Note
Section 1: Principles and Analysis of Disulfide Bond Formation; Disulfide Bonds in Protein Folding and Stability; Techniques to Monitor Disulfide Bond Formation and the Reduction Potential of Cysteine-Cystine Couples In vitro and In vivo; Real-time Detection of Thiol Chemistry in Single Proteins; Analysis of Disulfide Bond Formation in Therapeutic Proteins; Section 2: Disulfide Bonds in Peptides and Proteins: Structure, Function and Evolution; Evolutionary Adaptations to Cysteine-rich Peptide Folding; In vitro Refolding of Proteins; Allosteric Disulfide Bonds; Section 3: Oxidative Folding in the Cell; Disulfide Bond Formation and Isomerization in Escherichia coli; Disulfide Bond Formation in Mitochondria; Structural Insights into Disulfide Bond Formation and Protein Quality Control in the Mammalian Endoplasmic Reticulum; Mechanisms of Oxidative Protein Folding and Thiol-dependent Quality Control: Tales of Cysteines and Cystines; Disulfide Bond Formation Downstream of the Endoplasmic Reticulum; Section 4: Oxidative Folding and Cellular/Organism Homeostasis; How Microbes Cope with Oxidative Stress; Disulfide Bond Formation in the Endoplasmic Reticulum; Redox Regulation of Hsp70 Chaperone Function in the Endoplasmic Reticulum; Thioredoxin and Cellular Redox Systems: Beyong Protein Disulfide Bond Reduction; Section 5: Engineering Covalent Linkages in Peptides and Proteins; Stabilization of Peptides and Proteins by Engineered Disulfide Bonds; Genetic Code Expansion Approaches to Introduce Artificial Covalent Bonds into Proteins in Vivo
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SUMMARY OR ABSTRACT
Text of Note
With contributions from experts in the field, this book provides a comprehensive overview of the oxidative folding of cysteine-rich proteins.