The molecular chaperones interaction networks in protein folding and degradation
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Word Count
121,250 words, Guess
Page Count
485 pages
Identifiers
- ISBN-101493911295
- ISBN-139781493911295
- ISBN-139781493911301
- ISBN-101493911309
- Library of Congress Control Number2014940931
and 4 more
- OCLC Control Number878964711
- Better World Books9781493911295
- Better World Books9781493911301
- Open LibraryOL30389096M
Classifications
- LCCQP552.M64 M653 2014
- LCCQH301-705QD431-431.7
- LCCQH324.2-324.25
Description
Molecular chaperones are a fundamental group of proteins that have been identified only relatively recently. They are key components of a protein quality machinery in the cell which insures that the folding process of any newly-synthesized polypeptide chain results in the formation of a properly folded protein and that the folded protein is maintained in an active conformation throughout its functional lifetime. Molecular chaperones have been shown to play essential roles in cell viability under both normal and stress conditions. Chaperones can also assist in the unfolding and degradation of misfolded proteins and in disaggregating preformed protein aggregates. Chaperones are also involved in other cellular functions including protein translocation across membranes, vesicle fusion events, and protein secretion. In recent years, tremendous advances have been made in our understanding of the biology, biochemistry, and biophysics of function of molecular chaperones. In addition, recent technical developments in the fields of proteomics and genomics allowed us to obtain a global view of chaperone interaction networks. Finally, there is now a growing interest in the role of molecular chaperones in diseases. This book will provide a comprehensive analysis of the structure and function of the diverse systems of molecular chaperones and their role in cell stress responses and in diseases from a global network perspective. --
Series Statement
- Interactomics and systems biology
Other Editions
- The molecular chaperones interaction networks in protein folding and degradation
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