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第5环与β链β6'之间的相互作用参与α7烟碱型乙酰胆碱受体通道的门控。

Interactions between loop 5 and beta-strand beta6' are involved in alpha7 nicotinic acetylcholine receptors channel gating.

作者信息

Criado Manuel, Mulet José, Castillo Mar, Aldea Marcos, Sala Salvador, Sala Francisco

机构信息

Instituto de Neurociencias de Alicante, Universidad Miguel Hernández-CSIC, Sant Joan d'Alacant, Alicante, Spain.

出版信息

J Neurochem. 2008 Feb;104(3):719-30. doi: 10.1111/j.1471-4159.2007.05010.x. Epub 2007 Oct 25.

Abstract

Binding of agonists to nicotinic acetylcholine receptors (nAChR) is coupled to channel opening through local rearrangements of different domains of the protein. Recent structural data suggest that two of these regions could be the loop 5 (L5) and the beta-strand beta6', both forming the inner part of the N-terminal domain. Amino acids in these domains were mutated in alpha7 nAChRs, and expression levels and functional responses of mutant receptors were measured. Mutations located at the putative apex of L5, Asp97 and Glu98, and also at Phe100, gave receptors with smaller currents, showing qualitative differences with respect to muscle nAChRs. In contrast, mutations in the beta-strand beta6' (at Phe124 and Lys125) showed increased functional responses. Mutations affected equally the responses to acetylcholine and dimethylphenylpiperazinium, except in Phe100 where the latter was sevenfold less effective than in wild-type. Currents in mutants decayed with almost the same kinetics, ruling out large effects on desensitization. Analysis of double mutants demonstrated a functional coupling among the three electrically charged amino acids Asp97, Glu98, and Lys125, and also between Phe100 and Phe124. The results are compatible with the involvement of functional interactions between L5 and beta-strand beta6' during nAChR activation.

摘要

激动剂与烟碱型乙酰胆碱受体(nAChR)的结合通过蛋白质不同结构域的局部重排与通道开放相偶联。最近的结构数据表明,其中两个区域可能是环5(L5)和β链β6',它们都构成了N端结构域的内部部分。在α7 nAChRs中对这些结构域中的氨基酸进行了突变,并测量了突变受体的表达水平和功能反应。位于L5假定顶端的突变,即Asp97和Glu98,以及Phe100处的突变,使受体产生较小的电流,这与肌肉nAChRs在性质上存在差异。相比之下,β链β6'(Phe124和Lys125处)的突变显示功能反应增强。突变对乙酰胆碱和二甲基苯基哌嗪的反应影响相同,除了在Phe100处,后者的效力比野生型低七倍。突变体中的电流以几乎相同的动力学衰减,排除了对脱敏的重大影响。双突变体分析表明,三个带电荷的氨基酸Asp97、Glu98和Lys125之间以及Phe100和Phe124之间存在功能偶联。这些结果与nAChR激活过程中L5和β链β6'之间功能相互作用的参与是一致的。

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