The role of molecular chaperones in protein folding Journal Article


Authors: Hendrick, J. P.; Hartl, F. U.
Article Title: The role of molecular chaperones in protein folding
Abstract: Folding of newly synthesized polypeptides in the crowded cellular environment requires the assistance of so-called molecular chaperone proteins. Chaperones of the Hsp70 class and their partner proteins interact with nascent polypeptide chains on ribosomes and prevent their premature (mis)folding at least until a domain capable of forming a stable structure is synthesized. For many proteins, completion of folding requires the subsequent interaction with one of the large oligomeric ring-shaped proteins of the chaperonin family, which is composed of the GroEL-like proteins in eubacteria, mitochondria, and chloroplasts, and the TRiC family in eukaryotic cytosol and archaea. These proteins bind partially folded polypeptide in their central cavity and promote folding by ATP-dependent cycles of release and rebinding. In these reactions, molecular chaperones interact predominantly with the hydrophobic surfaces exposed by nonnative polypeptides, thereby preventing incorrect folding and aggregation.
Keywords: review; nonhuman; protein conformation; animals; protein protein interaction; protein binding; structure-activity relationship; bacteria (microorganisms); eukaryota; cell membrane; protein transport; protein biosynthesis; heat shock protein 70; protein folding; archaea; hsp70; hsp70 heat-shock proteins; chaperone; ribosome; molecular chaperones; eukaryotic cells; prokaryotic cells; priority journal; membrane translocation; groel; chaperonin; groel protein; calnexin
Journal Title: FASEB Journal
Volume: 9
Issue: 15
ISSN: 0892-6638
Publisher: Federation of American Societies for Experimental Biology  
Date Published: 1995-12-01
Start Page: 1559
End Page: 1569
Language: English
PUBMED: 8529835
PROVIDER: scopus
DOI: 10.1096/fasebj.9.15.8529835
DOI/URL:
Notes: Review -- Export Date: 28 August 2018 -- Source: Scopus
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  1. F. Ulrich Hartl
    75 Hartl