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Novel Regulatory Site within the TM3–4 Loop of Human Recombinant α3 Glycine Receptors Determines Channel Gating and Domain Structure

机译:人类重组α3甘氨酸受体TM3-4环内的新型调控位点决定通道门控和结构域结构

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摘要

Glycine receptors are Cys loop ligand-gated ion channels that mediate fast inhibitory synaptic transmission in the mammalian central nervous system. The functionally distinct splice variants α3L and α3K of the human glycine receptor differ by a 15-amino acid insert within the long intracellular TM3–4 loop, a region of high intersubunit diversity. In a mutational study, effects of the insert on ion channel function and secondary structure of the TM3–4 loop were investigated. Whole cell current responses and protein surface expression data indicated that the major effect of mutations within the insert was on channel gating. Changes in channel gating correlated with the distribution of charged residues about the splice region. Analysis of complex molecular weight indicated that recombinant TM3–4 loops of α3L and α3K associated into oligomers of different stoichiometry. Secondary structure analysis suggested that the insert stabilized the overall fold of the large cytoplasmic domain of α3L subunits. The absence of the insert resulted in a channel that was still functional, but the TM3–4 cytoplasmic domain appeared not stably folded. Thus, our data identified the spliced insert within the large TM 3–4 loop of α3 Gly receptors as a novel regulatory motif that serves a 2-fold role: (i) the presence of the insert stabilizes the overall spatial structure of the domain, and (ii) the insert presents a control unit that regulates gating of the receptor ion channel.
机译:甘氨酸受体是Cys环配体门控离子通道,可在哺乳动物中枢神经系统中介导快速抑制性突触传递。人甘氨酸受体的功能不同的剪接变体α3L和α3K在长的胞内TM3-4环(亚单位间多样性高的区域)中有一个15个氨基酸的插入片段。在一项突变研究中,研究了插入片段对离子通道功能和TM3-4环二级结构的影响。全细胞电流反应和蛋白质表面表达数据表明,插入片段内突变的主要作用是对通道门控。通道门控的变化与剪接区域附近带电残基的分布相关。复杂分子量的分析表明,重组的TM3–4环α3L和α3K与不同化学计量的低聚物相关。二级结构分析表明,插入片段稳定了α3L亚基大细胞质结构域的整体折叠。插入片段的缺失导致通道仍然起作用,但是TM3-4细胞质结构域似乎没有稳定折叠。因此,我们的数据确定了α3Gly受体的大型TM 3–4环内的剪接插入片段是发挥2倍作用的新型调控基序:(i)插入片段的存在稳定了域的整体空间结构, (ii)插入物具有控制单元,该控制单元调节受体离子通道的门控。

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