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两亲性肽折叠的早期事件:多纳秒分子动力学研究

Early events in the folding of an amphipathic peptide: A multinanosecond molecular dynamics study.

作者信息

Chipot C, Maigret B, Pohorille A

机构信息

Laboratoire de Chimie Théorique, Unité Mixte de Recherche CNRS No. 7565, Université Henri Poincaré-Nancy I, Vandoeuvre-lès-Nancy Cedex, France.

出版信息

Proteins. 1999 Sep 1;36(4):383-99.

PMID:10450080
Abstract

Folding of the capped LQQLLQQLLQL peptide is investigated at the water-hexane interface by molecular dynamics simulations for 161.5 ns. Initially placed in the aqueous phase as a beta-strand, the peptide rapidly adsorbs to the interface, where it adopts an amphipathic conformation. The marginal presence of nonamphipathic structures throughout the complete trajectory indicates that the corresponding conformations are strongly disfavored at the interface. It is further suggestive that folding in an interfacial environment proceeds through a pathway of successive amphipathic intermediates. The energetic and entropic penalties involved in the conformational changes along this pathway markedly increase the folding time scales of LQQLLQQLLQL, explaining why the alpha-helix, the hypothesized lowest free energy structure for a sequence with a hydrophobic periodicity of 3.6, has not been reached yet. The formation of a type I beta-turn at the end of the simulation confirms the importance of such motifs as initiation sites allowing the peptide to coalesce towards a secondary structure. Proteins 1999;36:383-399.

摘要

通过161.5纳秒的分子动力学模拟,研究了封端的LQQLLQQLLQL肽在水 - 己烷界面处的折叠情况。该肽最初作为β链置于水相中,随后迅速吸附到界面,在那里它呈现出两亲性构象。在整个完整轨迹中,非两亲性结构的存在极少,这表明相应的构象在界面处极不受欢迎。进一步表明,在界面环境中的折叠是通过连续的两亲性中间体途径进行的。沿着该途径的构象变化所涉及的能量和熵罚显著增加了LQQLLQQLLQL的折叠时间尺度,这解释了为什么尚未达到α螺旋,即假设的具有3.6疏水周期性序列的最低自由能结构。模拟结束时I型β转角的形成证实了此类基序作为起始位点的重要性,这些起始位点使肽能够凝聚形成二级结构。《蛋白质》1999年;36:383 - 399。

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