Institute of Physics, Polish Academy of Sciences, Al. Lotnikow 32/46, Warsaw 02-668, Poland.
J Chem Phys. 2009 Dec 7;131(21):215103. doi: 10.1063/1.3272275.
Mechanical unfolding of the fourth domain of Distyostelium discoideum filamin (DDFLN4) was studied by all-atom molecular dynamics simulations, using the GROMOS96 force field 43a1 and the simple point charge explicit water solvent. Our study reveals an important role of non-native interactions in the unfolding process. Namely, the existence of a peak centered at the end-to-end extension DeltaR approximately 22 nm in the force-extension curve is associated with breaking of non-native hydrogen bonds. Such a peak has been observed in experiments but not in Go models, where non-native interactions are neglected. We predict that an additional peak occurs at DeltaR approximately 2 nm using not only GROMOS96 force field 43a1 but also Amber 94 and OPLS force fields. This result would stimulate further experimental studies on elastic properties of DDFLN4.
采用全原子分子动力学模拟,使用 GROMOS96 力场 43a1 和简单点电荷显式溶剂,研究了盘基网柄菌丝状肌动蛋白(DDFLN4)第四结构域的机械展开。我们的研究揭示了非天然相互作用在展开过程中的重要作用。具体来说,在力-延伸曲线中,存在一个中心位于末端延伸 DeltaR 约 22nm 的峰,与非天然氢键的断裂有关。这种峰在实验中已经观察到,但在忽略非天然相互作用的 Go 模型中没有观察到。我们预测,不仅使用 GROMOS96 力场 43a1,还使用 Amber 94 和 OPLS 力场,在 DeltaR 约 2nm 处会出现另一个峰。这一结果将刺激对 DDFLN4 弹性性质的进一步实验研究。