Loading device effect on protein unfolding mechanics

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초록

Single-molecule mechanical manipulation has enabled quantitative understanding of not only the kinetics of both bond rupture and protein unfolding, but also the free energy landscape of chemical bond and/or protein folding. Despite recent studies reporting the role of loading device in bond rupture, a loading device effect on protein unfolding mechanics has not been well studied. In this work, we have studied the effect of loading-device stiffness on the kinetics of both bond rupture and protein unfolding mechanics using Brownian dynamics simulations. It is shown that bond rupture forces are dependent on not only loading rate but also the stiffness of loading device, and that protein unfolding mechanics is highly correlated with the stiffness of loading device. Our study sheds light on the importance of loading device effect on the mechanically induced bond ruptures and protein unfolding. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4732798]

키워드

MOLECULE PULLING EXPERIMENTSDYNAMIC FORCE SPECTROSCOPYSECONDARY STRUCTURESUBIQUITINTITINPATHWAYSMODELSTABILITYSIMULATIONSLANDSCAPES
제목
Loading device effect on protein unfolding mechanics
저자
Yoon, GwonchanNa, SungsooEom, Kilho
DOI
10.1063/1.4732798
발행일
2012-07-14
유형
Article
저널명
The Journal of Chemical Physics
137
2