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GABAA 受体亚基的第一个跨膜结构域在神经甾体调制和自发通道活性中的多种作用。

Multiple roles for the first transmembrane domain of GABAA receptor subunits in neurosteroid modulation and spontaneous channel activity.

机构信息

Department of Bioengineering, University of Toledo, 2801 W Bancroft Street, Toledo, OH 43606, United States.

出版信息

Neurosci Lett. 2010 Apr 12;473(3):242-7. doi: 10.1016/j.neulet.2010.02.058. Epub 2010 Mar 1.

Abstract

Neurosteroids exert potent physiological effects by allosterically modulating synaptic and extrasynaptic GABA(A) receptors. Some endogenous neurosteroids, such as 3alpha, 21-dihydroxy-5beta-pregnan-20-one (5alpha, 3alpha-THDOC), potentiate GABA(A) receptor function by interacting with a binding pocket defined by conserved residues in the first and fourth transmembrane (TM) domains of alpha subunits. Others, such as pregnenolone sulfate (PS), inhibit GABA(A) receptor function through as-yet unidentified binding sites. Here we investigate the mechanisms of PS inhibition of mammalian GABA(A) receptors, based on studies of PS inhibition of the UNC-49 GABA receptor, a GABA(A)-like receptor from Caenorhabditis elegans. In UNC-49, a 19 residue segment of TM1 can be mutated to increase or decrease PS sensitivity over a 20-fold range. Surprisingly, substituting these UNC-49 sequences into mammalian alpha(1), beta(2), and gamma(2) subunits did not produce the corresponding effects on PS sensitivity of the resulting chimeric receptors. Therefore, it is unlikely that a conserved PS binding pocket is formed at this site. However we observed several interesting unexpected effects. First, chimeric gamma2 subunits caused increased efficacy of 5alpha, 3alpha-THDOC potentiation; second, spontaneous gating of alpha(6)beta(2)delta receptors was blocked by PS, and reduced by chimeric beta(2) subunits; and third, direct activation of alpha(6)beta(2)delta receptors by 5alpha, 3alpha-THDOC was reduced by chimeric beta(2) subunits. These results reveal novel roles for non-alpha subunits in neurosteroid modulation and direct activation, and show that the beta subunit TM1 domain is important for spontaneous activity of extrasynaptic GABA(A) receptors.

摘要

神经甾体通过变构调节突触和 extrasynaptic GABA(A) 受体发挥强大的生理作用。一些内源性神经甾体,如 3α,21-二羟基-5β-孕烷-20-酮 (5α,3α-THDOC),通过与 α 亚基的第一和第四跨膜 (TM) 域中的保守残基定义的结合口袋相互作用增强 GABA(A) 受体功能。其他,如孕烯醇酮硫酸盐 (PS),通过尚未确定的结合位点抑制 GABA(A) 受体功能。在这里,我们根据对 UNC-49 GABA 受体(来自秀丽隐杆线虫的 GABA(A)样受体)的 PS 抑制研究,研究 PS 抑制哺乳动物 GABA(A) 受体的机制。在 UNC-49 中,TM1 中的 19 个残基片段可以突变以在 20 倍的范围内增加或降低 PS 的敏感性。令人惊讶的是,将这些 UNC-49 序列取代到哺乳动物 α(1)、β(2)和 γ(2)亚基中,不会对所得嵌合受体的 PS 敏感性产生相应的影响。因此,不太可能在该位点形成保守的 PS 结合口袋。然而,我们观察到了几个有趣的意外影响。首先,嵌合 γ2 亚基导致 5α,3α-THDOC 增强作用的功效增加;其次,PS 阻断了 α(6)β(2)δ 受体的自发门控,并被嵌合 β(2)亚基减少;第三,5α,3α-THDOC 直接激活 α(6)β(2)δ 受体被嵌合 β(2)亚基减少。这些结果揭示了非-α 亚基在神经甾体调制和直接激活中的新作用,并表明 β 亚基 TM1 结构域对 extrasynaptic GABA(A) 受体的自发活性很重要。

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