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不对称短杆菌肽通道:具有单个F6Val1残基的异二聚体通道。

Asymmetric gramicidin channels: heterodimeric channels with a single F6Val1 residue.

作者信息

Oiki S, Koeppe R E, Andersen O S

机构信息

Department of Physiology and Biophysics, Cornell University Medical College, New York, New York 10021.

出版信息

Biophys J. 1994 Jun;66(6):1823-32. doi: 10.1016/S0006-3495(94)80976-2.

Abstract

Substitution of Val1 by 4,4,4,4',4',4'-F6Val in [Val1]gramicidin A ([Val1]gA) produces channels in which the effects of amino acid replacements on dimer stability and ion permeation are nonadditive. If only one Val1 (in a symmetric [Val1]gA channel) is substituted by F6Val, the resulting heterodimeric channels are destabilized relative to both homodimeric parent channels and the single-channel conductance of the heterodimeric channels is reduced relative to the parent channels (Russell, E. W. B., L. B. Weiss, F. I. Navetta, R. E. Koeppe II, and O. S. Andersen. 1986. Single-channel studies on linear gramicidins with altered amino acid side chains. Effects of altering the polarity of the side chain at position #1 in gramicidin A. Biophys. J. 49:673; Durkin, J. T., R. E. Koeppe II, and O. S. Andersen. 1990. Energetics of gramicidin hybrid channel formation as a test for structural equivalence. Side-chain substitutions in the native sequence. J. Mol. Biol. 211:221-234). To understand the basis for this destabilization, we have examined further the characteristics of [F6Val1]/[Xxx1]gA heterodimers, where Xxx = Gly, Val, and Ala. These heterodimeric channels show rapid current transitions between (at least) two current levels and display asymmetric i-V characteristics. The orientation of the heterodimers relative to the applied potential was determined by asymmetric addition of the gramicidin analogs, one to each side of a preformed bilayer. The current transitions are most clearly illustrated for [F6Val1]/[Gly1]gA heterodimers, which possess two finite and well defined current levels. Based on the existence of these two conductance states and the analysis of duration and interval distributions, we conclude that the transitions between the two current levels correspond to conformational transitions in "stable" heterodimers. In the case of [F6Val1]/[Val1]gA and [F6Val1]/[Ala1]gA heterodimers, the low-conductance state is indistinguishable from zero. The two (or more) conductance states presumably correspond to different orientations of the dipolar F6Val1 side chain. The distribution between the high- and the low-conductance states varies as a function of potential in [F6Val1]/[Gly1]gA channels. These characteristics cause the [F6Val1]/nonpolar (Val, Ala, Gly)gA hybrid channels to serve as a "simple" model for understanding gating transitions in membrane-spanning channels.

摘要

在[缬氨酸1]短杆菌肽A([Val1]gA)中用4,4,4,4',4',4'-六氟缬氨酸(F6Val)取代缬氨酸1会产生通道,其中氨基酸替换对二聚体稳定性和离子渗透的影响是非加和性的。如果只有一个缬氨酸1(在对称的[Val1]gA通道中)被F6Val取代,那么相对于两个同二聚体亲本通道,所得的异二聚体通道会变得不稳定,并且异二聚体通道的单通道电导相对于亲本通道会降低(拉塞尔,E.W.B.,L.B.韦斯,F.I.纳韦塔,R.E.科普二世,以及O.S.安德森。1986年。对氨基酸侧链改变的线性短杆菌肽的单通道研究。改变短杆菌肽A第1位侧链极性的影响。《生物物理杂志》49:673;德金,J.T.,R.E.科普二世,以及O.S.安德森。1990年。短杆菌肽杂合通道形成的能量学作为结构等效性的测试。天然序列中的侧链取代。《分子生物学杂志》211:221 - 234)。为了理解这种不稳定的基础,我们进一步研究了[F6Val1]/[Xxx1]gA异二聚体的特性,其中Xxx = 甘氨酸、缬氨酸和丙氨酸。这些异二聚体通道在(至少)两个电流水平之间显示出快速的电流转变,并呈现出不对称的电流 - 电压特性。通过将短杆菌肽类似物不对称地添加到预先形成的双层膜的每一侧,确定了异二聚体相对于施加电位的取向。[F6Val1]/[Gly1]gA异二聚体最清楚地展示了电流转变,它具有两个有限且明确的电流水平。基于这两个电导状态的存在以及对持续时间和间隔分布的分析,我们得出结论,两个电流水平之间的转变对应于“稳定”异二聚体中的构象转变。在[F6Val1]/[Val1]gA和[F6Val1]/[Ala1]gA异二聚体的情况下,低电导状态与零无法区分。这两个(或更多)电导状态大概对应于偶极F6Val1侧链的不同取向。在[F6Val1]/[Gly1]gA通道中,高电导状态和低电导状态之间的分布随电位而变化。这些特性使得[F6Val1]/非极性(缬氨酸、丙氨酸、甘氨酸)gA杂合通道成为理解跨膜通道门控转变的“简单”模型。

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