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PMID: 14617181 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Small heat shock proteins, ClpB and the DnaK system form a functional triade in reversing protein aggregation.

Molecular microbiology ·Vol. 50 ·No. 2 ·2003-10-00 ·Pages 585-95

Mogk A, Deuerling E, Vorderwülbecke S, Vierling E, Bukau B

Abstract

Small heat shock proteins (sHsps) can efficiently prevent the aggregation of unfolded proteins in vitro. However, how this in vitro activity translates to function in vivo is poorly understood. We demonstrate that sHsps of Escherichia coli, IbpA and IbpB, co-operate with ClpB and the DnaK system in vitro and in vivo, forming a functional triade of chaperones. IbpA/IbpB and ClpB support independently and co-operatively the DnaK system in reversing protein aggregation. A delta ibpAB delta clpB double mutant exhibits strongly increased protein aggregation at 42 degrees C compared with the single mutants. sHsp and ClpB function become essential for cell viability at 37 degrees C if DnaK levels are reduced. The DnaK requirement for growth is increasingly higher for delta ibpAB, delta clpB, and the double delta ibpAB delta clpB mutant cells, establishing the positions of sHsps and ClpB in this chaperone triade.

MeSH Terms
Endopeptidase Clp Escherichia coli Proteins/metabolism HSP70 Heat-Shock Proteins/metabolism Heat-Shock Proteins/chemistry,genetics,metabolism Molecular Chaperones/metabolism Protein Binding Protein Folding
Chemicals
Escherichia coli Proteins HSP70 Heat-Shock Proteins Heat-Shock Proteins Molecular Chaperones Endopeptidase Clp dnaK protein, E coli ClpB protein, E coli
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mogk Axel
ZMBH, Universität Heidelberg, Im Neuenheimer Feld 282, Heidelberg D-69120, Germany. a.mogk@zmbh.uni-heidelberg.de
Deuerling Elke
Vorderwülbecke Sonja
Vierling Elizabeth
Bukau Bernd
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2003-10-00
Pages
585-95
Language
English
Region
England
NLM ID
8712028
Subset
IM
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