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氨基酸侧链对短杆菌肽A通道中离子转运能量分布的影响。

The effect of the amino-acid side chains on the energy profiles for ion transport in the gramicidin A channel.

作者信息

Etchebest C, Pullman A

机构信息

Institut de Biologie Physico-Chimique, C.N.R.S., Paris, France.

出版信息

J Biomol Struct Dyn. 1985 Feb;2(5):859-70. doi: 10.1080/07391102.1985.10507605.

Abstract

Computations on the energy profiles for Na+ in the gramicidin A (GA) channel have been extended by introducing the effect, previously neglected, of the amino acid side chains of GA, fixed in their most stable conformations. The calculations have been performed in two approximations: 1) with the ethanolamine tail fixed in its most stable conformation, 2) with the tail allowed to optimize its conformation upon the progression of the ion. In both approximations the overall shape of the energy profile is very similar to that obtained in the absence of the side chains. One observes, however, a general lowering of the profile upon the adjunction of the side chains. The analysis of the factors responsible for this energy lowering indicates that it is due essentially to the electrostatic and polarisation components of the interaction which interplay differently, however, in the different parts of the channel. A particular role is attributed in this respect to the tryptophan residues of GA. The role of the 4 tryptophans present, Trp 15, 13, 11 and 9, is individualized by stripping of one of them at a time. The strongest effect on the energy deepening is due to Trp 13 and is particularly prominent in the entrance zone at 14.5A from the center of the channel. The result indicates the possibility of investigating theoretically the effect on the energy profiles of the substitution of the "natural" side chain by others.

摘要

通过引入之前被忽略的、固定在其最稳定构象的短杆菌肽A(GA)氨基酸侧链的影响,对GA通道中Na+的能量分布计算进行了扩展。计算是在两种近似情况下进行的:1)乙醇胺尾部固定在其最稳定构象;2)尾部在离子移动过程中允许优化其构象。在这两种近似情况下,能量分布的整体形状与没有侧链时获得的形状非常相似。然而,可以观察到,添加侧链后能量分布总体上有所降低。对导致这种能量降低的因素的分析表明,这主要是由于相互作用的静电和极化成分,不过它们在通道的不同部分以不同方式相互作用。在这方面,GA的色氨酸残基具有特殊作用。通过一次去除其中一个色氨酸来区分存在的4个色氨酸(Trp 15、13、11和9)的作用。对能量加深影响最大的是Trp 13,在距通道中心14.5埃的入口区域尤为突出。结果表明,有可能从理论上研究用其他“天然”侧链替代对能量分布的影响。

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