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γ-氨基丁酸A(GABA(A))受体β1亚基M2通道内衬段细胞外部分周围的松散蛋白质堆积。

Loose protein packing around the extracellular half of the GABA(A) receptor beta1 subunit M2 channel-lining segment.

作者信息

Goren Eric N, Reeves David C, Akabas Myles H

机构信息

Departments of Physiology and Biophysics and of Neuroscience, Albert Einstein College of Medicine of Yeshiva University, Bronx, New York 10461, USA.

出版信息

J Biol Chem. 2004 Mar 19;279(12):11198-205. doi: 10.1074/jbc.M314050200. Epub 2004 Jan 8.

Abstract

GABA(A) receptors are ligand-gated ion channels formed by the pseudosymmetrical assembly of five homologous subunits around the central channel axis. The five M2 membrane-spanning segments largely line the channel. In the present work we probed the water surface accessibility of the beta(1) subunit M2 segment using the substituted cysteine accessibility method. We assayed the reaction of the negatively charged sulfhydryl-specific reagent, p-chloromercuribenzenesulfonate (pCMBS(-)), by its effect on subsequent currents elicited by EC(50) and saturating GABA concentrations. pCMBS(-), applied with GABA, reacted with 14 of the 19 residues tested. At the M2 cytoplasmic end from 2' to 6' only beta(1)A252C (2') and beta(1)T256C (6') were pCMBS(-)-reactive in the presence of GABA. We infer that the M2 segments are tightly packed in this region. Toward the extracellular half of M2 all residues from beta(1)T262C (12') through beta(1)E270C (20') reacted with pCMBS(-) applied with GABA. We infer that this region is highly mobile and loosely packed against the rest of the protein. Based on differences in pCMBS(-) reaction rates two domains can be distinguished on the putative channel-lining side of M2. A faster reacting domain includes the 2', 9', 12', 13', and 16' residues. The slower reacting face contains the 6', 10', and 14' residues. We hypothesize that these may represent the channel-lining faces in the closed and open states and that gating involves an 80-100 degrees rotation of the M2 segments. These results are consistent with the loose packing of the M2 segments inferred from the structure of the homologous Torpedo nicotinic acetylcholine receptor.

摘要

GABA(A)受体是配体门控离子通道,由围绕中央通道轴假对称组装的五个同源亚基构成。五个跨膜M2片段大致排列在通道周围。在本研究中,我们使用半胱氨酸替代可及性方法探究了β(1)亚基M2片段的水表面可及性。我们通过检测带负电荷的巯基特异性试剂对氯汞苯磺酸盐(pCMBS(-))对后续由EC(50)和饱和GABA浓度引发的电流的影响,来测定其反应。与GABA一起施加的pCMBS(-)与所测试的19个残基中的14个发生了反应。在M2胞质端,从2'到6',只有β(1)A252C(2')和β(1)T256C(6')在GABA存在下对pCMBS(-)有反应。我们推断M2片段在该区域紧密堆积。朝向M2的细胞外一半,从β(1)T262C(12')到β(1)E270C(20')的所有残基都与和GABA一起施加的pCMBS(-)发生了反应。我们推断该区域高度可移动且相对于蛋白质的其余部分松散堆积。基于pCMBS(-)反应速率的差异,在M2假定的通道内衬侧可区分出两个结构域。反应较快的结构域包括2'、9'、12'、13'和16'残基。反应较慢的面包含6'、10'和14'残基。我们假设这些可能分别代表通道在关闭和开放状态下的内衬面,并且门控涉及M2片段80 - 100度的旋转。这些结果与从同源的电鳐烟碱型乙酰胆碱受体结构推断出的M2片段松散堆积情况一致。

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