Related Experiment Videos
The DnaK chaperone is necessary for alpha-complementation of beta-galactosidase in Escherichia coli
Nicolas Lopes Ferreira1, Jean-Hervé Alix
1Institut de Biologie Physico-Chimique, U.P.R. 9073 du C.N.R.S. and Université Paris 7-Denis Diderot, France.
Abstract:
We show here the involvement of the molecular chaperone DnaK from Escherichia coli in the in vivo alpha-complementation of the beta-galactosidase. In the dnaK756(Ts) mutant, alpha-complementation occurs when the organisms are grown at 30 degrees C but not at 37 or 40 degrees C, although these temperatures are permissive for bacterial growth. Plasmid-driven expression of wild-type dnaK restores the alpha-complementation in the mutant but also stimulates it in a dnaK(+) strain. In a mutant which contains a disrupted dnaK gene (DeltadnaK52::Cm(r)), alpha-complementation is also impaired, even at 30 degrees C. This observation provides an easy and original phenotype to detect subtle functional changes in a protein such as the DnaK756 chaperone, within the physiologically relevant temperature.