首页> 美国卫生研究院文献>ACS Chemical Neuroscience >Propofol Modulation of α1 Glycine ReceptorsDoes Not Require a Structural Transition at Adjacent Subunits ThatIs Crucial to Agonist-Induced Activation
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Propofol Modulation of α1 Glycine ReceptorsDoes Not Require a Structural Transition at Adjacent Subunits ThatIs Crucial to Agonist-Induced Activation

机译:丙泊酚对α1甘氨酸受体的调节不需要在相邻亚基处进行结构转变对激动剂诱导的激活至关重要

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摘要

Pentameric glycine receptors (GlyRs) couple agonist binding to activation of an intrinsic ion channel. Substitution of the R271 residue impairs agonist-induced activation and is associated with the human disease hyperekplexia. On the basis of a homology model of the α1 GlyR, we substituted residues in the vicinity of R271 with cysteines, generating R271C, Q226C, and D284C single-mutant GlyRs and R271C/Q226C and R271C/D284C double-mutant GlyRs. We then examined the impact of interactions between these positions on receptor activation by glycine and modulation by the anesthetic propofol, as measured by electrophysiological experiments. Upon expression in Xenopus laevis oocytes, D284C-containing receptors were nonfunctional, despite biochemical evidence of successful cell surface expression. At R271C/Q226C GlyRs, glycine-activated whole-cell currents were increased 3-fold in the presence of the thiol reductant dithiothreitol, whereas the ability of propofol to enhance glycine-activated currents was not affected by dithiothreitol. Biochemical experiments showed that mutant R271C/Q226C subunits form covalently linked pentamers,showing that intersubunit disulfide cross-links are formed. Thesedata indicate that intersubunit disulfide links in the transmembranedomain prevent a structural transition that is crucial to agonist-inducedactivation of GlyRs but not to modulation by the anesthetic propofoland implicate D284 in the functional integrity of GlyRs.
机译:五聚体甘氨酸受体(GlyRs)将激动剂结合到固有离子通道的激活上。 R271残基的取代削弱了激动剂诱导的活化,并与人类疾病性高钾血症有关。根据α1GlyR的同源性模型,我们用半胱氨酸取代R271附近的残基,生成R271C,Q226C和D284C单突变GlyR和R271C / Q226C和R271C / D284C双突变GlyR。然后,我们检查了这些位置之间的相互作用对甘氨酸激活受体和麻醉性异丙酚进行调制的影响,如电生理实验所测。在非洲爪蟾卵母细胞中表达后,尽管有成功的细胞表面表达的生化证据,但含有D284C的受体却没有功能。在R271C / Q226C GlyRs上,在巯基还原剂二硫苏糖醇存在下,甘氨酸激活的全细胞电流增加了3倍,而丙泊酚增强甘氨酸激活电流的能力不受二硫苏糖醇的影响。生化实验表明,突变R271C / Q226C亚基形成共价连接的五聚体,表明形成了亚基间二硫键。这些数据表明跨膜中的亚基间二硫键结构域阻止了对激动剂诱导至关重要的结构转变激活GlyRs,但不被麻醉性异丙酚调节并暗示D284具有GlyR的功能完整性。

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