Miloshevsky Gennady V, Jordan Peter C
Department of Chemistry, MS-015, Brandeis University, PO Box 549110, Waltham, MA 02454-9110, USA.
Trends Neurosci. 2004 Jun;27(6):308-14. doi: 10.1016/j.tins.2004.03.013.
Combined with high-resolution atomic-level crystal structures of channel forming peptides, theory has become a powerful tool for illuminating factors influencing permeation. Here, advantages and limitations of the more familiar continuum and molecular modeling techniques are briefly outlined. These methods are applied to issues of permeation in two different channel families: gramicidin and K(+) channels. Using structural data, theory provides verifiable atomic-level insights into permeation dynamics, channel conductance and molecular selectivity mechanisms. Not only can theory confirm experimental inference, it can also sometimes provide structural perspectives in advance of experiment.
结合通道形成肽的高分辨率原子水平晶体结构,理论已成为阐明影响渗透因素的有力工具。在此,简要概述了更为常见的连续介质和分子建模技术的优缺点。这些方法被应用于两个不同通道家族的渗透问题:短杆菌肽和钾离子通道。利用结构数据,理论为渗透动力学、通道电导和分子选择性机制提供了可验证的原子水平见解。理论不仅可以证实实验推断,有时还能在实验之前提供结构方面的观点。