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激动剂诱导的α7烟碱型乙酰胆碱受体胞外结构域的构象变化。

Agonist-induced conformational changes in the extracellular domain of alpha 7 nicotinic acetylcholine receptors.

作者信息

Lyford Lisa K, Sproul Adrian D, Eddins Donnie, McLaughlin James T, 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. 2003 Sep;64(3):650-8. doi: 10.1124/mol.64.3.650.

Abstract

The molecular mechanisms that couple agonist binding to the gating of Cys-loop ionotropic receptors are not well understood. The crystal structure of the acetylcholine (ACh) binding protein has provided insights into the structure of the extracellular domain of nicotinic receptors and a framework for testing mechanisms of activation. Key ligand binding residues are located at the C-terminal end of the beta9 strand. At the N-terminal end of this strand (loop 9) is a conserved glutamate [E172 in chick alpha7 nicotinic acetylcholine receptors (nAChRs)] that is important for modulating activation. We hypothesize that agonist binding induces the movement of loop 9. To test this, we used the substituted-cysteine accessibility method to examine agonist-dependent changes in the modification of cysteines introduced in loop 9 of L247T alpha7 nAChRs. In the absence of agonist, ACh-evoked responses of E172C/L247T alpha7 nAChRs were inhibited by 2-trimethylammonioethylmethane thiosulfonate (MTSET). Agonist coapplication with MTSET reduced the extent and rate of modification. The dose-dependence of ACh activation was nearly identical with that of ACh-dependent protection from modification. ACh increased the inhibition by methanethiosulfonate reagents of N170C and did not change inhibition of G171C receptors. The antagonist dihydro-beta-erythroidine did not mimic the effects of ACh. Combined with a structural model, the data suggest that receptor activation includes subunit rotation and/or intrasubunit conformational changes that move N170 to a more accessible position and E172 to a more protected position away from the vestibule. Thus, loop 9, located near the junction between the extracellular and transmembrane domains, participates in conformational changes triggered by ligand binding.

摘要

将激动剂结合与半胱氨酸环离子型受体门控相偶联的分子机制尚未完全清楚。乙酰胆碱(ACh)结合蛋白的晶体结构为烟碱型受体胞外结构域的结构提供了见解,并为测试激活机制提供了框架。关键的配体结合残基位于β9链的C末端。在这条链的N末端(环9)有一个保守的谷氨酸(鸡α7烟碱型乙酰胆碱受体(nAChRs)中的E172),它对调节激活很重要。我们假设激动剂结合会诱导环9的移动。为了验证这一点,我们使用了半胱氨酸替代可及性方法来检测L247Tα7 nAChRs环9中引入的半胱氨酸修饰的激动剂依赖性变化。在没有激动剂的情况下,E172C/L247Tα7 nAChRs的ACh诱发反应被2-三甲基铵乙基甲硫代磺酸盐(MTSET)抑制。激动剂与MTSET共同应用降低了修饰的程度和速率。ACh激活的剂量依赖性与ACh依赖性的修饰保护几乎相同。ACh增加了甲硫代磺酸盐试剂对N170C的抑制作用,而对G171C受体的抑制作用没有改变。拮抗剂二氢β-刺桐碱不能模拟ACh的作用。结合结构模型,数据表明受体激活包括亚基旋转和/或亚基内构象变化,这些变化使N170移动到一个更容易接近的位置,使E172移动到一个远离前庭的更受保护的位置。因此,位于胞外和跨膜结构域交界处附近的环9参与了由配体结合引发的构象变化。

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