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使用阳离子传导性GABAA受体进行的突变研究揭示了配体门控离子通道半胱氨酸环家族的选择性决定因素。

Mutational studies using a cation-conducting GABAA receptor reveal the selectivity determinants of the Cys-loop family of ligand-gated ion channels.

作者信息

Jensen Marianne L, Pedersen Lone N, Timmermann Daniel B, Schousboe Arne, Ahring Philip K

机构信息

NeuroSearch A/S, Ballerup, Denmark.

出版信息

J Neurochem. 2005 Feb;92(4):962-72. doi: 10.1111/j.1471-4159.2004.02970.x.

Abstract

The present study evaluates how four key amino acid residue positions (- 4' to - 1') within the M1-M2 linker of the GABA(A) receptor beta subunit influences ion selectivity of a cation-conducting GABA receptor. Cation selectivity was found to be highly dependent on the side-chains of the amino acid residues present. The critical factor for cation selectivity was the presence of a negatively charged Glu or Asp residue in the -1' position. Receptors containing the neutral amino acids Gln or Asn or a positively charged Arg residue were anion selective. In the presence of a -1' Glu residue, the amino acids in adjacent positions were also found to be important determinants of cation selectivity. Moreover, the length of the M1-M2 linker as well as the presence of a Pro residue within this segment also affected ion selectivity, suggesting that the local environment and three-dimensional position of the -1' Glu are essential determinants of cation permeation. Conversely, no specific amino acid residues were found to be essential for anion selectivity, suggesting that the basic architecture of the selectivity segment of this class of receptor channels is optimally suited for anion conduction.

摘要

本研究评估了GABA(A)受体β亚基M1-M2连接区内的四个关键氨基酸残基位置(-4'至-1')如何影响阳离子传导型GABA受体的离子选择性。发现阳离子选择性高度依赖于所存在氨基酸残基的侧链。阳离子选择性的关键因素是-1'位置存在带负电荷的Glu或Asp残基。含有中性氨基酸Gln或Asn或带正电荷的Arg残基的受体对阴离子具有选择性。在存在-1' Glu残基的情况下,相邻位置的氨基酸也被发现是阳离子选择性的重要决定因素。此外,M1-M2连接区的长度以及该片段内Pro残基的存在也影响离子选择性,这表明-1' Glu的局部环境和三维位置是阳离子渗透的关键决定因素。相反,未发现特定氨基酸残基对阴离子选择性至关重要,这表明这类受体通道选择性片段的基本结构最适合阴离子传导。

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