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加州电鳐乙酰胆碱受体脂质暴露跨膜片段M4上的色氨酸取代决定通道门控。

Tryptophan substitutions at the lipid-exposed transmembrane segment M4 of Torpedo californica acetylcholine receptor govern channel gating.

作者信息

Lasalde J A, Tamamizu S, Butler D H, Vibat C R, Hung B, McNamee M G

机构信息

Section of Molecular and Cellular Biology, University of California, Davis 95616, USA.

出版信息

Biochemistry. 1996 Nov 12;35(45):14139-48. doi: 10.1021/bi961583l.

Abstract

Our previous amino acid substitutions at the postulated lipid-exposed transmembrane segment M4 of the Torpedo californica acetylcholine receptor (AChR) focused on the alpha C418 position. A tryptophan substitution on the alpha C418 produced a 3-fold increase in normalized macroscopic response to acetylcholine in voltage-clamped Xenopus laevis oocytes (Lee et al., 1994). This result was explained by a 23-fold decrease in the closing rate constant measured from single-channel analysis (Ortiz-Miranda et al., 1996). In this study, we introduce more tryptophan substitutions at different positions of this postulated lipid-exposed segment M4 in order to examine functional consequences at the single-channel level. From a series of amino acid substitutions at alpha G421, only phenylalanine and tryptophan produced a substantial increase in the open time constant. The lack of response from a tyrosine substitution at the alpha G421 suggests that the side chain volume is not the main structural element responsible for the effect of tryptophan on the stabilization of the open state of the channel. Three multiple mutants, alpha C418W/G421A, alpha C418W/G421W, and alpha C418W/beta C447W, were constructed in order to establish the correlation between the number of lipid-exposed tryptophans and the channel open time constant. The alpha C418W/G421A double mutant demonstrated that when both previous mutations are combined the open time constant was increased 1.5-fold relative to the alpha C418W. When the two mutants (alpha C418W and alpha G421W) were combined in a single mutation, a functional receptor was expressed and the open time constant of the new double mutant increased to 33.4 ms, an 80-fold increase relative to wild type. Estimations of free energy changes calculated from the rate constant for the opening transition suggest that each tryptophan contributes to the stabilization of the open state of the channel by about 0.8 kcal/mol, and the effect of tryptophan substitutions on the free energy is additive. This result suggests that in the channel gating mechanism of the AChR, each subunit contributes independently to the energy barrier between the open and closed state. At selected positions within the postulated lipid surface of the AChR, tryptophan substitutions could establish hydrophobic and perhaps dipole interactions that may play a dramatic role in the channel gating mechanism.

摘要

我们之前对加州电鳐乙酰胆碱受体(AChR)假定的脂质暴露跨膜片段M4进行的氨基酸替换,聚焦于α亚基的C418位点。在α亚基C418位点上替换为色氨酸后,在电压钳制的非洲爪蟾卵母细胞中,对乙酰胆碱的标准化宏观反应增加了3倍(Lee等人,1994年)。单通道分析测得的关闭速率常数下降了23倍,这解释了该结果(Ortiz-Miranda等人,1996年)。在本研究中,我们在这个假定的脂质暴露片段M4的不同位置引入了更多色氨酸替换,以研究单通道水平上的功能后果。在α亚基G421位点的一系列氨基酸替换中,只有苯丙氨酸和色氨酸使开放时间常数大幅增加。α亚基G421位点酪氨酸替换无反应,这表明侧链体积不是色氨酸对通道开放状态稳定作用的主要结构因素。构建了三个多重突变体,α C418W/G421A、α C418W/G421W和α C418W/β C447W,以建立脂质暴露色氨酸数量与通道开放时间常数之间的相关性。α C418W/G421A双突变体表明,当两个先前的突变组合时,开放时间常数相对于α C418W增加了1.5倍。当两个突变体(α C418W和α G421W)组合在一个单一突变中时,表达了功能性受体,新双突变体的开放时间常数增加到33.4毫秒,相对于野生型增加了80倍。根据开放转变速率常数计算的自由能变化估计表明,每个色氨酸对通道开放状态的稳定作用约为0.8千卡/摩尔,色氨酸替换对自由能的影响是累加的。这一结果表明,在AChR的通道门控机制中,每个亚基对开放和关闭状态之间的能量屏障有独立贡献。在AChR假定的脂质表面的选定位置,色氨酸替换可以建立疏水相互作用,也许还有偶极相互作用,这可能在通道门控机制中起重要作用。

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