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短杆菌肽A通道中钠的结合位点:分子动力学与固态核磁共振数据的比较

The binding site of sodium in the gramicidin A channel: comparison of molecular dynamics with solid-state NMR data.

作者信息

Woolf T B, Roux B

机构信息

Department of Physics, Université de Montréal, Québec, Canada.

出版信息

Biophys J. 1997 May;72(5):1930-45. doi: 10.1016/S0006-3495(97)78839-8.

Abstract

The location of the main binding site for sodium in the gramicidin A (GA) channel was investigated with molecular dynamics simulations, using an atomic model of the channel embedded in a fully hydrated dimyristoyl phosphatidycholine (DMPC) bilayer. Twenty-four separate simulations in which a sodium was restrained at different locations along the channel axis were generated. The results are compared with carbonyl 13C chemical shift anisotropy solid-state NMR experimental data previously obtained with oriented GA:DMPC samples. Predictions are made for other solid-state NMR properties that could be observed experimentally. The combined information from experiment and simulation strongly suggests that the main binding sites for sodium are near the channel's mouth, approximately 9.2 A from the center of the dimer channel. The 13C chemical shift anisotropy of Leu10 is the most affected by the presence of a sodium ion in the binding site. In the binding site, the sodium ion is lying off-axis, making contact with two carbonyl oxygens and two single-file water molecules. The main channel ligand is provided by the carbonyl group of the Leu10-Trp11 peptide linkage, which exhibits the largest deviation from the ion-free channel structure. Transient contacts with the carbonyl group of Val8 and Trp15 are also present. The influence of the tryptophan side chains on the channel conductance is examined based on the current information about the binding site.

摘要

利用嵌入完全水合的二肉豆蔻酰磷脂酰胆碱(DMPC)双层中的通道原子模型,通过分子动力学模拟研究了短杆菌肽A(GA)通道中钠的主要结合位点的位置。生成了24个单独的模拟,其中钠被限制在沿通道轴的不同位置。将结果与先前用取向的GA:DMPC样品获得的羰基13C化学位移各向异性固态NMR实验数据进行了比较。对其他可通过实验观察到的固态NMR性质进行了预测。实验和模拟的综合信息强烈表明,钠的主要结合位点靠近通道口,距离二聚体通道中心约9.2埃。Leu10的13C化学位移各向异性受结合位点中钠离子存在的影响最大。在结合位点,钠离子偏离轴,与两个羰基氧和两个单列水分子接触。主要通道配体由Leu10-Trp11肽键的羰基提供,其与无离子通道结构的偏差最大。还存在与Val8和Trp15的羰基的瞬态接触。基于关于结合位点的当前信息,研究了色氨酸侧链对通道电导的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d953/1184390/4f9bd0114769/biophysj00034-0023-a.jpg

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