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β2亚基中的单个M1残基在麻醉调节和直接激活中改变GABAA受体的通道门控。

A single M1 residue in the beta2 subunit alters channel gating of GABAA receptor in anesthetic modulation and direct activation.

作者信息

Chang Chang-sheng S, Olcese Riccardo, Olsen Richard W

机构信息

Department of Molecular and Medical Pharmacology, David Geffen School of Medicine, UCLA, Los Angeles, California 90095-1735, USA.

出版信息

J Biol Chem. 2003 Oct 31;278(44):42821-8. doi: 10.1074/jbc.M306978200. Epub 2003 Aug 25.

Abstract

General anesthetics allosterically modulate the activity of neuronal gamma-aminobutyric acid, type A (GABAA), receptors. Previous mutational studies from our laboratory and others have shown that the regions in transmembrane domain 1 (M1) and pre-M1 of alpha and beta subunits in GABA receptors are essential for positive modulation of GABA binding and function by the intravenous (IV) general anesthetics. Mutation of beta2Gly-219 to Phe corresponded in rho nearly eliminated the modulatory effect of IV anesthetics in alpha1/beta2/gamma2S combination. However, the general anesthetics retained the ability to directly open the channel of mutant G219F, and the apparent affinity for GABA was increased, and desensitization rate was reduced. In this study, we made additional single mutations such as 219 Ser, Cys, Ile, Asp, Arg, Tyr, and Trp. The larger side chains of the replacement residues produced the greatest reduction in enhancement of GABA currents by IV anesthetics at clinical concentrations (Trp > Tyr = Phe > Arg > Asp > Ile > Cys > Ser = wild type). Compared with a 2-3-fold response in wild type, pentobarbital and propofol enhanced less than 0.5-fold; etomidate and alphaxalone modulation was reduced from more than 4- to 1-fold in G219F, G219Y, and G219W. A linear correlation was observed between the volume of the residue at position 219 and the loss of modulation. An identical correlation was found for the effect of modulation on left-shift in the GABA EC50 value; furthermore, the same rank order of residues, related to size, was found for reduction in the maximal direct channel-gating by pentobarbital (1 mm) and etomidate (100 mum) and for increased apparent affinity for direct gating by the IV anesthetics.

摘要

全身麻醉药可别构调节神经元γ-氨基丁酸A型(GABAA)受体的活性。我们实验室及其他机构之前的突变研究表明,GABA受体α和β亚基跨膜结构域1(M1)和前M1区域对于静脉全身麻醉药对GABA结合及功能的正向调节至关重要。β2亚基第219位甘氨酸突变为苯丙氨酸几乎消除了静脉麻醉药对α1/β2/γ2S组合的调节作用。然而,全身麻醉药仍保留直接打开突变型G219F通道的能力,且对GABA的表观亲和力增加,脱敏速率降低。在本研究中,我们进行了额外的单突变,如219位丝氨酸、半胱氨酸、异亮氨酸、天冬氨酸、精氨酸、酪氨酸和色氨酸。取代残基较大的侧链导致临床浓度下静脉麻醉药增强GABA电流的作用降低幅度最大(色氨酸>酪氨酸 = 苯丙氨酸>精氨酸>天冬氨酸>异亮氨酸>半胱氨酸>丝氨酸 = 野生型)。与野生型2至3倍的反应相比,戊巴比妥和丙泊酚增强作用小于0.5倍;依托咪酯和阿法沙龙在G219F、G219Y和G219W中的调节作用从4倍以上降至1倍。观察到219位残基体积与调节作用丧失之间存在线性相关性。对于调节作用对GABA半数有效浓度(EC50)值左移的影响也发现了相同的相关性;此外,对于戊巴比妥(1 mM)和依托咪酯(100 μM)最大直接通道门控的降低以及静脉麻醉药对直接门控表观亲和力的增加,发现了与大小相关的相同残基排序。

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