The complex kinetics of protein folding in wide temperature ranges


Autoria(s): Wang J
Data(s)

2004

Resumo

The complex protein folding kinetics in wide temperature ranges is studied through diffusive dynamics on the underlying energy landscape. The well-known kinetic chevron rollover behavior is recovered from the mean first passage time, with the U-shape dependence on temperature. The fastest folding temperature T-0 is found to be smaller than the folding transition temperature T-f. We found that the fluctuations of the kinetics through the distribution of first passage time show rather universal behavior, from high-temperature exponential Poissonian kinetics to the relatively low-temperature highly nonexponential kinetics. The transition temperature is at T-k and T-0, T-k, T-f. In certain low-temperature regimes, a power law behavior at long time emerges. At very low temperatures ( lower than trapping transition temperature T< T-0/(4&SIM;6)), the kinetics is an exponential Poissonian process again.

Identificador

http://ir.ciac.jl.cn/handle/322003/15627

http://www.irgrid.ac.cn/handle/1471x/151354

Idioma(s)

英语

Fonte

Wang J.The complex kinetics of protein folding in wide temperature ranges,BIOPHYSICAL JOURNAL ,2004,87(4):2164-2171

Palavras-Chave #RANDOM-ENERGY-MODEL #MOLECULE ENZYMATIC DYNAMICS #SINGLE-MOLECULE #TRANSITION-STATE #LANDSCAPE THEORY #HETEROPOLYMERS #PATHWAYS #INTERMITTENCY #COOPERATIVITY #SPECTROSCOPY
Tipo

期刊论文