Department of Neurobiology, University of Alabama at Birmingham, Birmingham, Alabama 35294-0021, USA.
Biophys J. 1999 Nov;77(5):2542-51. doi: 10.1016/s0006-3495(99)77089-x.
A conserved leucine residue in the midpoint of the second transmembrane domain (M2) of the ligand-activated ion channel family has been proposed to play an important role in receptor activation. In this study, we assessed the importance of this leucine in the activation of rat alpha 1 beta 2 gamma 2 GABA receptors expressed in Xenopus laevis oocytes by site-directed mutagenesis and two-electrode voltage clamp. The hydrophobic conserved M2 leucines in alpha1(L263), beta2(L259), and gamma 2(L274) subunits were mutated to the hydrophilic amino acid residue serine and coexpressed in all possible combinations with their wild-type and/or mutant counterparts. The mutation in any one subunit decreased the EC(50) and created spontaneous openings that were blocked by picrotoxin and, surprisingly, by the competitive antagonist bicuculline. The magnitudes of the shifts in GABA EC(50) and picrotoxin IC(50) as well as the degree of spontaneous openings were all correlated with the number of subunits carrying the leucine mutation. Simultaneous mutation of the GABA binding site (beta 2Y157S; increased the EC(50)) and the conserved M2 leucine (beta 2L259S; decreased the EC(50)) produced receptors with the predicted intermediate agonist sensitivity, indicating the two mutations affect binding and gating independently. The results are discussed in light of a proposed allosteric activation mechanism.
配体激活离子通道家族的跨膜区(M2)中部的保守亮氨酸残基被认为在受体激活中发挥重要作用。在这项研究中,我们通过定点突变和双电极电压钳技术评估了该亮氨酸在表达于非洲爪蟾卵母细胞的大鼠α1β2γ2GABA 受体激活中的重要性。α1(L263)、β2(L259)和γ2(L274)亚基中保守的 M2 疏水性亮氨酸被突变为亲水性氨基酸丝氨酸,并与它们的野生型和/或突变型在所有可能的组合中共同表达。任何一个亚基的突变都会降低 EC50 并产生自发开放,这种自发开放被 picrotoxin 和令人惊讶的竞争性拮抗剂bicuculline 所阻断。GABA EC50 和 picrotoxin IC50 的变化幅度以及自发开放的程度都与携带亮氨酸突变的亚基数相关。GABA 结合位点(β2Y157S;增加 EC50)和保守的 M2 亮氨酸(β2L259S;降低 EC50)的同时突变产生了具有预期中间激动剂敏感性的受体,表明这两个突变独立地影响结合和门控。结果根据提出的变构激活机制进行了讨论。