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失活肽对Shaker钾通道的能量学研究

Energetics of Shaker K channels block by inactivation peptides.

作者信息

Murrell-Lagnado R D, Aldrich R W

机构信息

Howard Hughes Medical Institute, Department of Molecular and Cellular Physiology, Stanford University Medical Center, California 94305.

出版信息

J Gen Physiol. 1993 Dec;102(6):977-1003. doi: 10.1085/jgp.102.6.977.

Abstract

A synthetic peptide of the NH2-terminal inactivation domain of the ShB channel blocks Shaker channels which have an NH2-terminal deletion and mimics many of the characteristics of the intramolecular inactivation reaction. To investigate the role of electrostatic interactions in both peptide block and the inactivation process we measured the kinetics of block of macroscopic currents recorded from the intact ShB channel, and from ShB delta 6-46 channels in the presence of peptides, at different ionic strengths. The rate of inactivation and the association rate constants (k(on)) for the ShB peptides decreased with increasing ionic strength. k(on) for a more positively charged peptide was more steeply dependent on ionic strength consistent with a simple electrostatic mechanism of enhanced diffusion. This suggests that a rate limiting step in the inactivation process is the diffusion of the NH2-terminal domain towards the pore. The dissociation rates (k(off)) were insensitive to ionic strength. The temperature dependence of k(on) for the ShB peptide was very high, (Q10 = 5.0 +/- 0.58), whereas k(off) was relatively temperature insensitive (Q10 approximately 1.1). The results suggest that at higher temperatures the proportion of time either the peptide or channel spends in the correct conformation for binding is increased. There were two components to the time course of recovery from block by the ShB peptide, indicating two distinct blocked states, one of which has similar kinetics and dependence on external K+ concentration as the inactivated state of ShB. The other is voltage-dependent and at -120 mV is very unstable. Increasing the net charge on the peptide did not increase sensitivity to knock-off by external K+. We propose that the free peptide, having fewer constraints than the tethered NH2-terminal domain binds to a similar site on the channel in at least two different conformations.

摘要

ShB通道氨基末端失活结构域的合成肽可阻断氨基末端缺失的Shaker通道,并模拟分子内失活反应的许多特征。为了研究静电相互作用在肽阻断和失活过程中的作用,我们在不同离子强度下测量了完整ShB通道以及存在肽时ShB δ6 - 46通道记录的宏观电流的阻断动力学。ShB肽的失活速率和结合速率常数(k(on))随离子强度增加而降低。带更多正电荷的肽的k(on)对离子强度的依赖性更强,这与增强扩散的简单静电机制一致。这表明失活过程中的一个限速步骤是氨基末端结构域向孔的扩散。解离速率(k(off))对离子强度不敏感。ShB肽的k(on)的温度依赖性非常高(Q10 = 5.0 +/- 0.58),而k(off)对温度相对不敏感(Q10约为1.1)。结果表明,在较高温度下,肽或通道处于正确结合构象的时间比例增加。ShB肽阻断后恢复的时间进程有两个成分,表明有两种不同的阻断状态,其中一种的动力学和对外部K +浓度的依赖性与ShB的失活状态相似。另一种是电压依赖性的,在 - 120 mV时非常不稳定。增加肽上的净电荷不会增加对外部K +敲除的敏感性。我们提出,与连接的氨基末端结构域相比,自由肽受到的限制更少,它至少以两种不同的构象与通道上的相似位点结合。

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