Centre for Neuroscience, Division of Medical Sciences, Ninewells Hospital and Medical School, University of Dundee, Dundee DD1 9SY, UK.
J Physiol. 2010 Feb 15;588(Pt 4):587-96. doi: 10.1113/jphysiol.2009.183137. Epub 2009 Nov 23.
Nicotinic acetylcholine (nACh) and 5-hydroxytryptamine type 3 (5-HT(3)) receptors are cation-selective ion channels of the pentameric ligand-gated ion channel (pLGIC) superfamily. Multiple lines of evidence adduced over the last 30 years indicate that the lining of the channel of such receptors is formed by the alpha-helical second transmembrane (TM2) domain and flanking sequences contributed by each of the five subunits present within the receptor complex. Specific amino acid residues within, and adjacent to, the TM2 domain influence single channel conductance, ion selectivity, and other aspects of receptor function that include gating and desensitization. However, more recent work has revealed important structural determinants of single channel conductance and ion selectivity that are not associated with the TM2 domain. Direct experimental evidence indicates that the intracellular domain of eukaryotic pLGICs, in particular a region of the loop linking TM3 and TM4 termed the membrane-associated (MA) stretch, exerts a strong influence upon ion channel biophysics. Moreover, recent computational approaches, complemented by experimentation, implicate the extracellular domain as an additional important determinant of ion conduction. This brief review describes how our knowledge of ion conduction and selectivity in cation-selective pLGICs has evolved beyond TM2.
烟碱型乙酰胆碱 (nACh) 和 5-羟色胺 3 型 (5-HT(3)) 受体是五聚体配体门控离子通道 (pLGIC) 超家族中的阳离子选择性离子通道。过去 30 年来的多条证据表明,这些受体通道的衬里由每个受体复合物中存在的五个亚基的 α 螺旋第二跨膜 (TM2) 结构域和侧翼序列组成。TM2 结构域内和附近的特定氨基酸残基会影响单通道电导、离子选择性以及包括门控和脱敏在内的受体功能的其他方面。然而,最近的工作揭示了与 TM2 结构域无关的单通道电导和离子选择性的重要结构决定因素。直接实验证据表明,真核 pLGIC 的细胞内域,特别是连接 TM3 和 TM4 的环中的一个区域,称为膜相关 (MA) 延伸区,对离子通道生物物理学有很强的影响。此外,最近的计算方法(辅以实验)表明,细胞外域是离子传导的另一个重要决定因素。这篇简短的综述描述了我们对阳离子选择性 pLGIC 中的离子传导和选择性的认识是如何超越 TM2 发展的。