Coordinated synthesis of the two ClpB isoforms improves the ability of Escherichia coli to survive thermal stress
- 14 July 2005
- journal article
- Published by Wiley in FEBS Letters
- Vol. 579 (20) , 4235-4241
- https://doi.org/10.1016/j.febslet.2005.06.054
Abstract
Eubacteria synthesize a full‐length (ClpB95) and a N‐terminally truncated (ClpB80) version of the ClpB disaggregase owing to the presence of a translation initiation site within the clpB transcript. Why these two isoforms have been evolutionary conserved is poorly understood. Here, we constructed a series of E. coli strains and plasmids allowing production of the ClpB95/ClpB80 pair, ClpB95 alone, or ClpB80 alone from near physiological concentrations to a 6–10‐fold excess over normal cellular levels. We found that although overexpressed ClpB95 or ClpB80 can independently restore basal thermotolerance to ΔclpB cells, strains expressing ClpB80 from the clpB chromosomal locus do not exhibit increased resistance to thermal killing at 50 °C relative to clpB null cells. Furthermore, synthesis of physiological levels of ClpB95 is less effective than coordinated expression of ClpB95/ClpB80 in protecting E. coli from thermal killing. These results provide an explanation for the conservation of the two ClpB isoforms in eubacteria and are consistent with the fact that wild type E. coli maintains the ClpB80 to ClpB95 ratio at a nearly constant value of 0.4–0.5 under a variety of stress conditions.Keywords
This publication has 33 references indexed in Scilit:
- The N‐terminal domain of Escherichia coli ClpB enhances chaperone functionFEBS Letters, 2005
- Interaction of the N‐terminal domain of Escherichia coli heat‐shock protein ClpB and protein aggregates during chaperone activityProtein Science, 2004
- The N Terminus of ClpB from Thermus thermophilus Is Not Essential for the Chaperone ActivityPublished by Elsevier ,2002
- Stability and interactions of the amino‐terminal domain of ClpB from Escherichia coliProtein Science, 2002
- Molecular Chaperones in the Cytosol: from Nascent Chain to Folded ProteinScience, 2002
- Review: Mechanisms of Disaggregation and Refolding of Stable Protein Aggregates by Molecular ChaperonesJournal of Structural Biology, 2001
- Heptameric ring structure of the heat-shock protein ClpB, a protein-activated ATPase in Escherichia coliJournal of Molecular Biology, 2000
- Identification of thermolabile Escherichia coli proteins: prevention and reversion of aggregation by DnaK and ClpBThe EMBO Journal, 1999
- Posttranslational Quality Control: Folding, Refolding, and Degrading ProteinsScience, 1999
- The molecular chaperone Hsp78 confers compartment-specific thermotolerance to mitochondria.The Journal of cell biology, 1996