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首页> 外文期刊>Life sciences >MUSCARINIC ACETYLCHOLINE RECEPTORS - STRUCTURAL BASIS OF LIGAND BINDING AND G PROTEIN COUPLING
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MUSCARINIC ACETYLCHOLINE RECEPTORS - STRUCTURAL BASIS OF LIGAND BINDING AND G PROTEIN COUPLING

机译:肌肉乙酰胆碱受体-配体结合和G蛋白偶联的结构基础

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Muscarinic acetylcholine receptors (m1-m5) were studied by a combined molecular genetic/pharmacologic approach to elucidate the molecular characteristics of the ligand binding site and of the receptor domains involved in G protein coupling. Site-directed mutagenesis studies of the rat m3 muscarinic receptor suggest that the acetylcholine binding domain is formed by a series of hydrophilic amino acids located in the ''upper'' half of transmembrane domains (TM) III, V, VI, and VII. Moreover, we showed that mutational modification of a TM VI Asn residue (Asn507 in the rat m3 receptor sequence) which is characteristic for the muscarinic receptor family has little effect on high-affinity acetylcholine binding and receptor activation, but results in dramatic reductions in binding affinities for certain subclasses of muscarinic antagonists. The N-terminal portion of the third intracellular loop (i3) of muscarinic and other G protein-coupled receptors has been shown to play a central role in determining the G protein coupling profile of a given receptor subtype. Insertion mutagenesis studies with the rat m3 muscarinic receptor suggest that this region forms an amphiphilic alpha-helix and that the hydrophobic side of this helix represents an important G protein recognition surface. Further mutational analysis of this receptor segment showed that Tyr254 located at the N-terminus of the i3 loop of the m3 muscarinic receptor plays a key role in muscarinic receptor-induced Gq activation. The studies described here, complemented by biochemical and biophysical approaches, should eventually lead to a detailed structural model of the ligand-receptor-G protein complex. [References: 35]
机译:通过组合分子遗传/药理学方法研究了毒蕈碱型乙酰胆碱受体(m1-m5),以阐明配​​体结合位点和参与G蛋白偶联的受体域的分子特征。对大鼠m3毒蕈碱受体的定点诱变研究表明,乙酰胆碱结合结构域由位于跨膜结构域(TM)III,V,VI和VII``上半部''的一系列亲水氨基酸形成。此外,我们表明,毒蕈碱受体家族特有的TM VI Asn残基(大鼠m3受体序列中的Asn507)的突变修饰对高亲和力乙酰胆碱结合和受体激活几乎没有影响,但导致结合力显着降低对毒蕈碱拮抗剂某些亚类的亲和力。毒蕈碱和其他G蛋白偶联受体的第三个细胞内环(i3)的N端部分已显示在确定给定受体亚型的G蛋白偶联谱中起着核心作用。用大鼠m3毒蕈碱受体进行的诱变研究表明,该区域形成两亲性α-螺旋,并且该螺旋的疏水侧代表重要的G蛋白识别表面。对该受体片段的进一步突变分析表明,位于m3毒蕈碱受体i3环N末端的Tyr254在毒蕈碱受体诱导的Gq激活中起关键作用。此处描述的研究,加上生物化学和生物物理方法的补充,最终将导致配体-受体-G蛋白复合物的详细结构模型。 [参考:35]

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