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外β-折叠在α7烟碱型受体二价阳离子调节中的作用

Role of the outer beta-sheet in divalent cation modulation of alpha7 nicotinic receptors.

作者信息

McLaughlin James T, Fu Jie, Sproul Adrian D, Rosenberg Robert L

机构信息

Department of Pharmacology, CB# 7365, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7365, USA.

出版信息

Mol Pharmacol. 2006 Jul;70(1):16-22. doi: 10.1124/mol.106.023259. Epub 2006 Mar 13.

Abstract

alpha-7 Nicotinic acetylcholine receptors (AChRs) exhibit a positive modulation by divalent cations similar to that observed in other AChRs. In the chick alpha7 AChR, this modulation involves a conserved glutamate in loop 9 (Glu172) that undergoes agonist-dependent movements during activation. From these observations, we hypothesized that movements of the nearby beta-sheet formed by the beta7, beta9, and beta10 strands may be involved in agonist activation and/or divalent modulation. To test this hypothesis, we examined functional properties of cysteine mutations of the beta7 and beta10 strands, alone or in pairs. We postulated that reduced flexibility or mobility of the beta7/beta9/beta10-sheet as a result of introduction of a disulfide bond between the beta strands would alter activation by agonists. Using a nondesensitizing alpha7 mutant background (L247T), we identified one mutant pair, K144C + T198C, that exhibited a unique characteristic: it was fully activated by divalent cations (Ca2+, Ba2+, or Sr2+) in the absence of acetylcholine (ACh). Divalent-evoked currents were blocked by the alpha7 antagonist methyllycaconitine and were abolished when Glu172 was mutated to glutamine. When the K144C + T198C pair was expressed in wild-type alpha7 receptors, activation required both ACh and divalent cations. We conclude that the introduction of a disulfide bond into beta7/beta9/beta10 lowers the energetic barrier between open and closed conformations, probably by reducing the torsional flexibility of the beta-sheet. In this setting, divalent cations, acting at the conserved glutamate in loop 9, act as full agonists or requisite coagonists.

摘要

α7烟碱型乙酰胆碱受体(AChRs)表现出与其他AChRs中观察到的类似的二价阳离子正向调节作用。在鸡α7 AChR中,这种调节涉及环9中的一个保守谷氨酸(Glu172),其在激活过程中经历激动剂依赖性运动。基于这些观察结果,我们推测由β7、β9和β10链形成的附近β折叠的运动可能参与激动剂激活和/或二价调节。为了验证这一假设,我们单独或成对研究了β7和β10链的半胱氨酸突变体的功能特性。我们推测,由于在β链之间引入二硫键导致β7/β9/β10折叠的柔韧性或流动性降低,会改变激动剂的激活作用。使用非脱敏α7突变体背景(L247T),我们鉴定出一对独特的突变体K144C + T198C,其具有一个独特的特征:在没有乙酰胆碱(ACh)的情况下,它被二价阳离子(Ca2+、Ba2+或Sr2+)完全激活。二价阳离子诱发的电流被α7拮抗剂甲基lycaconitine阻断,当Glu172突变为谷氨酰胺时电流消失。当K144C + T198C对在野生型α7受体中表达时,激活需要ACh和二价阳离子两者。我们得出结论,在β7/β9/β10中引入二硫键可能通过降低β折叠的扭转柔韧性来降低开放和关闭构象之间的能量屏障。在这种情况下,作用于环9中保守谷氨酸的二价阳离子充当完全激动剂或必需的共激动剂。

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