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  DnaK, DnaJ and GrpE form a cellular chaperone machinery capable of repairing heat-induced protein damage

Schroder, H., Langer, T., Hartl, F. U., & Bukau, B. (1993). DnaK, DnaJ and GrpE form a cellular chaperone machinery capable of repairing heat-induced protein damage. EMBO J, 12(11), 4137-44.

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Schroder, H., Author
Langer, T.1, Author           
Hartl, F. U., Author
Bukau, B., Author
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1Department Langer - Mitochondrial Proteostasis, Max Planck Institute for Biology of Ageing, Max Planck Society, ou_3393994              

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Free keywords: Bacterial Proteins/genetics/*metabolism Chaperonins Enzyme Activation Enzyme Reactivators/*metabolism Escherichia coli/*metabolism *Escherichia coli Proteins Genes, Bacterial HSP40 Heat-Shock Proteins *HSP70 Heat-Shock Proteins Heat-Shock Proteins/genetics/*metabolism Hot Temperature Luciferases/*metabolism Multigene Family Protein Denaturation Proteins/genetics/*metabolism Recombinant Proteins/metabolism
 Abstract: Members of the conserved Hsp70 chaperone family are assumed to constitute a main cellular system for the prevention and the amelioration of stress-induced protein damage, though little direct evidence exists for this function. We investigated the roles of the DnaK (Hsp70), DnaJ and GrpE chaperones of Escherichia coli in prevention and repair of thermally induced protein damage using firefly luciferase as a test substrate. In vivo, luciferase was rapidly inactivated at 42 degrees C, but was efficiently reactivated to 50% of its initial activity during subsequent incubation at 30 degrees C. DnaK, DnaJ and GrpE did not prevent luciferase inactivation, but were essential for its reactivation. In vitro, reactivation of heat-inactivated luciferase to 80% of its initial activity required the combined activity of DnaK, DnaJ and GrpE as well as ATP, but not GroEL and GroES. DnaJ associated with denatured luciferase, targeted DnaK to the substrate and co-operated with DnaK to prevent luciferase aggregation at 42 degrees C, an activity that was required for subsequent reactivation. The protein repair function of DnaK, GrpE and, in particular, DnaJ is likely to be part of the role of these proteins in regulation of the heat shock response.

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 Dates: 1993-111993-11-01
 Publication Status: Issued
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 Identifiers: Other: 7900997
ISSN: 0261-4189 (Print)0261-4189 (Linking)
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Title: EMBO J
Source Genre: Journal
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Pages: - Volume / Issue: 12 (11) Sequence Number: - Start / End Page: 4137 - 44 Identifier: -