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Modular Design of Cys-loop Ligand-gated Ion Channels: Functional 5-HT3 and GABA ρ1 Receptors Lacking the Large Cytoplasmic M3M4 Loop

机译:半胱氨酸环配体门控离子通道的模块化设计:缺少大型细胞质M3M4环的功能5-HT3和GABAρ1受体。

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摘要

Cys-loop receptor neurotransmitter-gated ion channels are pentameric assemblies of subunits that contain three domains: extracellular, transmembrane, and intracellular. The extracellular domain forms the agonist binding site. The transmembrane domain forms the ion channel. The cytoplasmic domain is involved in trafficking, localization, and modulation by cytoplasmic second messenger systems but its role in channel assembly and function is poorly understood and little is known about its structure. The intracellular domain is formed by the large (>100 residues) loop between the α-helical M3 and M4 transmembrane segments. Putative prokaryotic Cys-loop homologues lack a large M3M4 loop. We replaced the complete M3M4 loop (115 amino acids) in the 5-hydroxytryptamine type 3A (5-HT3A) subunit with a heptapeptide from the prokaryotic homologue from Gloeobacter violaceus. The macroscopic electrophysiological and pharmacological characteristics of the homomeric 5-HT3A-glvM3M4 receptors were comparable to 5-HT3A wild type. The channels remained cation-selective but the 5-HT3A-glvM3M4 single channel conductance was 43.5 pS as compared with the subpicosiemens wild-type conductance. Coexpression of hRIC-3, a protein that modulates expression of 5-HT3 and acetylcholine receptors, significantly attenuated 5-HT–induced currents with wild-type 5-HT3A but not 5-HT3A-glvM3M4 receptors. A similar deletion of the M3M4 loop in the anion-selective GABA-ρ1 receptor yielded functional, GABA-activated, anion-selective channels. These results imply that the M3M4 loop is not essential for receptor assembly and function and suggest that the cytoplasmic domain may fold as an independent module from the transmembrane and extracellular domains.
机译:半胱氨酸环受体神经递质门控离子通道是包含三个域的亚基的五聚体组装:细胞外,跨膜和细胞内。细胞外结构域形成激动剂结合位点。跨膜结构域形成离子通道。细胞质结构域参与细胞质第二信使系统的运输,定位和调节,但在通道装配和功能中的作用知之甚少,对其结构了解甚少。细胞内结构域由α-螺旋M3和M4跨膜片段之间的大环(> 100个残基)形成。假定的原核半胱氨酸环同源物缺少一个大的M3M4环。我们用来自紫色假单胞菌原核同源物中的七肽替换了3A型5-羟色胺(5-HT3A)中完整的M3M4环(115个氨基酸)。同类5-HT3A-glvM3M4受体的宏观电生理学和药理学特征与5-HT3A野生型相当。通道仍然是阳离子选择性的,但5-HT3A-glvM3M4单通道电导率与亚picosiemens野生型电导率为43.5 pS。 hRIC-3(一种可调节5-HT3和乙酰胆碱受体表达的蛋白)的共表达可显着减弱5-HT诱导的野生型5-HT3A电流,但不能减弱5-HT3A-glvM3M4受体。阴离子选择性GABA-ρ1受体中M3M4环的类似缺失产生功能性,GABA活化的阴离子选择性通道。这些结果暗示,M3M4环对于受体组装和功能不是必需的,并暗示细胞质结构域可以折叠为跨膜结构域和细胞外结构域的独立模块。

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