Folding and stability of trp aporepressor from Escherichia coli
- 31 July 1990
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 29 (30) , 7011-7020
- https://doi.org/10.1021/bi00482a009
Abstract
Equilibrium and kinetic studies of the urea-induced unfolding of trp aporepressor from Escherichia coli were performed to probe the folding mechanism of this intertwined, dimeric protein. The equilibrium unfolding transitions at pH 7.6 and 25.degree. C monitored by difference absorbance, fluorescence, and circular dichroism spectroscopy are coincident within experimental error. All three transitions are well described by a two-state model involving the native dimer and the unfolded monomer; the free energy of folding in the absence of denaturant and under standard-state conditions is estimated to be 23.3 .+-. 0.9 kcal/mol of dimer. The midpoint of the equilibrium unfolding transition increases with increasing protein concentration in the manner expected from the law of mass action for the two-state model. We find no evidence for stable folding intermediates. Kinetic studies reveal that unfolding is governed by a single first-order reaction whose relaxation time decreases exponentially with increasing urea concentration and also decreases with increasing protein concentration in the transition zone. Refolding involves at least three phases that depend on both the protein concentration and the final urea concentration in a complex manner. The relaxation time of the slowest of these refolding phases is identical with that for the single phase in unfolding in the transition zone, consistent with the results expected for a reaction that is kinetically reversible. The two faster refolding phases are presumed to arise from slow isomerization reactions in the unfolded form and reflect parallel folding channels.This publication has 18 references indexed in Scilit:
- Unfolding of the trp repressor from Escherichia coli monitored by fluorescence, circular dichroism and nuclear magnetic resonanceEuropean Journal of Biochemistry, 1987
- Equilibrium and kinetic measurements of the conformational transition of thioredoxin in ureaBiochemistry, 1986
- Folding of dihydrofolate reductase from Escherichia coliBiochemistry, 1986
- Effects of the phenylalanine-22 .fwdarw. leucine, glutamic acid-49 .fwdarw. methionine, glycine-234 .fwdarw. aspartic acid and glycine-234 .fwdarw. lysine mutations on the folding and stability of the .alpha. subunit of tryptophan synthase from Escherichia coliBiochemistry, 1986
- Role of proline peptide bond isomerization in unfolding and refolding of ribonuclease.Proceedings of the National Academy of Sciences, 1986
- Structure and regulation of aroH, the structural gene for the tryptophan-repressible 3-deoxy-d-arabino-heptulosonic acid-7-phosphate synthetase of Escherichia coliJournal of Molecular Biology, 1981
- Nucleotide sequence and expression of Escherichia coli trpR, the structural gene for the trp aporepressor.Proceedings of the National Academy of Sciences, 1980
- Acid catalysis of the formation of the slow-folding species of RNase A: Evidence that the reaction is proline isomerizationProceedings of the National Academy of Sciences, 1978
- Test of the extended two-state model for the kinetic intermediates observed in the folding transition of ribonuclease AJournal of Molecular Biology, 1978
- Interpretation of the Ultraviolet Spectral Changes of ProteinsJournal of Biological Chemistry, 1960