SUBMILLISECOND FOLDING OF MONOMERIC LAMBDA-REPRESSOR

Authors
Citation
Gs. Huang et Tg. Oas, SUBMILLISECOND FOLDING OF MONOMERIC LAMBDA-REPRESSOR, Proceedings of the National Academy of Sciences of the United Statesof America, 92(15), 1995, pp. 6878-6882
Citations number
41
Categorie Soggetti
Multidisciplinary Sciences
ISSN journal
00278424
Volume
92
Issue
15
Year of publication
1995
Pages
6878 - 6882
Database
ISI
SICI code
0027-8424(1995)92:15<6878:SFOML>2.0.ZU;2-2
Abstract
The folding kinetics of a truncated form of the N-terminal domain of p hage lambda repressor [lambda(6-85)] has been investigated by using th e technique of dynamic NMR, lambda(6-85) has been shown previously to fold in a purely two-state fashion, This allows the determination of f olding and unfolding rates from simulation of the exchange-broadened a romatic resonances of Tyr-22. The folding kinetics were determined ove r a range of 1.35 to 3.14 M urea, The urea dependence of both folding and unfolding rate constants is exponential, suggesting that the rate- determining step is invariant at the urea concentrations studied, The folding and unfolding rates extrapolated to 0 M urea at 37 degrees C a re 3600 +/- 400 s(-1) and 27 +/- 6 s(-1), respectively. The observed l ambda(6-85) folding rate constant exceeds that of other fast-folding g lobular proteins by a factor of 14-54. The urea dependence of the fold ing and unfolding rate constants suggests that the transition state of the rate-determining step is considerably more exposed to solvent tha n previously studied protein-folding transition states. The surprising rapidity of lambda(6-85) folding and unfolding may be the consequence of its all-helical secondary structure. These kinetic results clearly demonstrate that all of the fundamental events of protein folding fan occur on the submillisecond time scale.