Sigel E, Buhr A
Department of Pharmacology, University of Bern, Switzerland.
Trends Pharmacol Sci. 1997 Nov;18(11):425-9. doi: 10.1016/s0165-6147(97)01118-8.
The GABAA receptor belongs, along with the nicotinic acetylcholine receptor, the glycine receptor and the 5-HT3 receptor, to a family of homologous transmitter-gated ion channels mediating fast synaptic transmission. Many classes of drug interact with the GABAA receptor, which is the major inhibitory ion channel in the mammalian brain. Among these drugs are the allosteric modulators acting at the benzodiazepine binding site. In this article, Erwin Sigel and Andreas Buhr discuss recent studies that have identified amino acid residues that are thought to form the binding pocket for these compounds. These residues are probably located at subunit interfaces of the protein pentamer and at least some of them are homologous to residues implicated in channel agonist binding. This implies pseudosymmetry of channel agonist and channel modulatory sites, which may be, as recent data indicate, a general principle realized in other pseudosymmetric protein complexes.
GABAA受体与烟碱型乙酰胆碱受体、甘氨酸受体和5-HT3受体同属一个同源性递质门控离子通道家族,介导快速突触传递。许多类药物与GABAA受体相互作用,GABAA受体是哺乳动物大脑中的主要抑制性离子通道。这些药物中包括作用于苯二氮䓬结合位点的变构调节剂。在本文中,欧文·西格尔和安德烈亚斯·布尔讨论了最近的研究,这些研究确定了被认为形成这些化合物结合口袋的氨基酸残基。这些残基可能位于蛋白质五聚体的亚基界面,并且其中至少一些与参与通道激动剂结合的残基同源。这意味着通道激动剂和通道调节位点的假对称性,正如最近的数据所示,这可能是在其他假对称蛋白质复合物中实现的一个普遍原则。