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开放态KcsA通道的靶向分子动力学

Targeted molecular dynamics of an open-state KcsA channel.

作者信息

Compoint Mylène, Picaud Fabien, Ramseyer Christophe, Girardet Claude

机构信息

Laboratoire de Physique Moléculaire, UMR CNRS 6624-Faculté des Sciences, la Bouloie, Université de Franche-Comté, 25030 Besançon Cedex, France.

出版信息

J Chem Phys. 2005 Apr 1;122(13):134707. doi: 10.1063/1.1869413.

Abstract

Pore opening of KcsA channel is studied using targeted molecular dynamics simulations. Conformational changes of the protein are determined, starting from the crystallized refined 2.0 A structure (pdb 1K4C) determined in x-ray experiments and arriving to the open-state structure constructed on the basis of electron paramagnetic resonance spectroscopic data (pdb 1JQ1). Our results corroborate the essential role played by the terminal residues located on the transmembrane helices M2 which were not taken into account at that time. The aperture mechanism of the channel appears to be ziplike. A small constraint (approximately equal to 5 x 10(-2) kcal mol(-1) A(-2) per C(alpha)) applied to the terminal residues located on the intracellular side is sufficient to initialize the pore opening at the innermost part of the gate, but additional constraint must be applied to definitely complete the pore aperture. The open structure is proved to be a metastable state since releasing the constraint leads to another relaxed open conformation which seems to reach stability.

摘要

利用靶向分子动力学模拟研究了KcsA通道的孔开放。从X射线实验中确定的结晶精制2.0埃结构(pdb 1K4C)开始,到基于电子顺磁共振光谱数据构建的开放态结构(pdb 1JQ1),确定了蛋白质的构象变化。我们的结果证实了当时未被考虑的跨膜螺旋M2上的末端残基所起的重要作用。通道的孔径机制似乎是拉链式的。对位于细胞内侧的末端残基施加一个小的约束(每个Cα约等于5×10⁻²千卡摩尔⁻¹埃⁻²)足以在门的最内部启动孔开放,但必须施加额外的约束才能最终完成孔的孔径。开放结构被证明是一种亚稳态,因为释放约束会导致另一种松弛的开放构象,该构象似乎达到稳定。

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