Filatov G N, White M M
Department of Physiology, Medical College of Pennsylvania, Philadelphia, USA.
Mol Pharmacol. 1995 Sep;48(3):379-84.
A highly conserved leucine is found in the middle of the porelining (M2) domain of the members of the ligand-gated ion channel family. Two very different roles have been proposed for this leucine. In one model, this residue swings into the lumen of the channel during desensitization to form the nonconducting desensitized state, whereas in the other model, the leucines from each subunit interact with each other to form a constriction in the channel that constitutes the actual gate of the channel. We examined the role of this leucine in the muscle-type acetylcholine receptor by replacing it with the polar amino acid threonine. Replacement of the leucine in any one subunit slows desensitization and shifts the dose-response relationship toward lower concentrations. Replacement of leucines in additional subunits leads to progressively larger shifts in the dose-response curves. The shift depends only on the number of leucines replaced, not on which particular subunits contain the mutation; in other words, the mutations act independently. At the single-channel level, the mutation greatly increases the channel mean open time. We conclude that the role of the conserved leucine is to set the mean open time of the channel through interactions with other regions of the receptor rather than to serve as the gate per se of the ion channel.
在配体门控离子通道家族成员的孔内衬(M2)结构域中部发现了一个高度保守的亮氨酸。针对这个亮氨酸提出了两种截然不同的作用。在一种模型中,该残基在脱敏过程中摆动到通道腔内以形成非传导性脱敏状态,而在另一种模型中,每个亚基的亮氨酸相互作用在通道中形成一个狭窄区域,该狭窄区域构成通道的实际门控。我们通过将其替换为极性氨基酸苏氨酸来研究这个亮氨酸在肌肉型乙酰胆碱受体中的作用。在任何一个亚基中替换亮氨酸都会减缓脱敏过程,并使剂量 - 反应关系向更低浓度偏移。在其他亚基中替换亮氨酸会导致剂量 - 反应曲线逐渐发生更大的偏移。这种偏移仅取决于被替换的亮氨酸数量,而不取决于哪个特定亚基含有突变;换句话说,这些突变是独立起作用的。在单通道水平上,该突变极大地增加了通道的平均开放时间。我们得出结论,保守亮氨酸的作用是通过与受体的其他区域相互作用来设定通道的平均开放时间,而不是作为离子通道本身的门控。