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αβδ 和 αβγ GABA 受体的比较:变构调节和通过位点选择性全身麻醉剂鉴定亚基排列。

Comparison of αβδ and αβγ GABA receptors: Allosteric modulation and identification of subunit arrangement by site-selective general anesthetics.

机构信息

Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital, and Department of Anesthesia, Harvard Medical School, Boston, MA 02114, USA.

出版信息

Pharmacol Res. 2018 Jul;133:289-300. doi: 10.1016/j.phrs.2017.12.031. Epub 2017 Dec 30.

Abstract

GABA receptors play a dominant role in mediating inhibition in the mature mammalian brain, and defects of GABAergic neurotransmission contribute to the pathogenesis of a variety of neurological and psychiatric disorders. Two types of GABAergic inhibition have been described: αβγ receptors mediate phasic inhibition in response to transient high-concentrations of synaptic GABA release, and αβδ receptors produce tonic inhibitory currents activated by low-concentration extrasynaptic GABA. Both αβδ and αβγ receptors are important targets for general anesthetics, which induce apparently different changes both in GABA-dependent receptor activation and in desensitization in currents mediated by αβγ vs. αβδ receptors. Many of these differences are explained by correcting for the high agonist efficacy of GABA at most αβγ receptors vs. much lower efficacy at αβδ receptors. The stoichiometry and subunit arrangement of recombinant αβγ receptors are well established as β-α-γ-β-α, while those of αβδ receptors remain controversial. Importantly, some potent general anesthetics selectively bind in transmembrane inter-subunit pockets of αβγ receptors: etomidate acts at β/α interfaces, and the barbiturate R-5-allyl-1-methyl-5-(m-trifluoromethyl-diazirynylphenyl) barbituric acid (R-mTFD-MPAB) acts at α/β and γ/β interfaces. Thus, these drugs are useful as structural probes in αβδ receptors formed from free subunits or concatenated subunit assemblies designed to constrain subunit arrangement. Although a definite conclusion cannot be drawn, studies using etomidate and R-mTFD-MPAB support the idea that recombinant α1β3δ receptors may share stoichiometry and subunit arrangement with α1β3γ2 receptors.

摘要

GABA 受体在调节成熟哺乳动物大脑中的抑制作用方面发挥着主导作用,而 GABA 能神经传递的缺陷导致了多种神经和精神疾病的发病机制。已经描述了两种类型的 GABA 能抑制作用:αβγ 受体介导对突触 GABA 释放的短暂高浓度的相性抑制,而 αβδ 受体产生由低浓度的 extrasynaptic GABA 激活的紧张性抑制电流。αβδ 和 αβγ 受体都是全身麻醉剂的重要靶点,全身麻醉剂诱导 GABA 依赖性受体激活和由 αβγ 与 αβδ 受体介导的失敏的电流明显不同的变化。这些差异中的许多差异可以通过纠正大多数 αβγ 受体中 GABA 的高激动剂效力以及在 αβδ 受体中低效力来解释。重组 αβγ 受体的化学计量和亚基排列已经很好地确立为 β-α-γ-β-α,而 αβδ 受体的亚基排列仍然存在争议。重要的是,一些有效的全身麻醉剂选择性地结合在 αβγ 受体的跨膜亚基间口袋中:依托咪酯作用于β/α 界面,而巴比妥类药物 R-5-烯丙基-1-甲基-5-(m-三氟甲基二氮杂环庚烷基苯基)巴比妥酸(R-mTFD-MPAB)作用于α/β 和γ/β 界面。因此,这些药物是有用的结构探针,可用于由游离亚基或设计用于约束亚基排列的串联亚基组装形成的 αβδ 受体。尽管不能得出明确的结论,但使用依托咪酯和 R-mTFD-MPAB 的研究支持这样的观点,即重组的 α1β3δ 受体可能与 α1β3γ2 受体具有相同的化学计量和亚基排列。

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