首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Novel Bifunctional Alkylphenol Anesthetic Allows Characterization of γ-Aminobutyric Acid Type A (GABAA) Receptor Subunit Binding Selectivity in Synaptosomes
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A Novel Bifunctional Alkylphenol Anesthetic Allows Characterization of γ-Aminobutyric Acid Type A (GABAA) Receptor Subunit Binding Selectivity in Synaptosomes

机译:一种新型的双功能烷基酚麻醉剂可以表征突触小体中的γ-氨基丁酸A型(GABAA)受体亚基的结合选择性

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摘要

Propofol, an intravenous anesthetic, is a positive modulator of the GABAA receptor, but the mechanistic details, including the relevant binding sites and alternative targets, remain disputed. Here we undertook an in-depth study of alkylphenol-based anesthetic binding to synaptic membranes. We designed, synthesized, and characterized a chemically active alkylphenol anesthetic (2-((prop-2-yn-1-yloxy)methyl)-5-(3-(trifluoromethyl)-3H-diazirin-3-yl)phenol, AziPm-click (1)), for affinity-based protein profiling (ABPP) of propofol-binding proteins in their native state within mouse synaptosomes. The ABPP strategy captured ∼4% of the synaptosomal proteome, including the unbiased capture of five α or β GABAA receptor subunits. Lack of γ2 subunit capture was not due to low abundance. Consistent with this, independent molecular dynamics simulations with alchemical free energy perturbation calculations predicted selective propofol binding to interfacial sites, with higher affinities for α/β than γ-containing interfaces. The simulations indicated hydrogen bonding is a key component leading to propofol-selective binding within GABAA receptor subunit interfaces, with stable hydrogen bonds observed between propofol and α/β cavity residues but not γ cavity residues. We confirmed this by introducing a hydrogen bond-null propofol analogue as a protecting ligand for targeted-ABPP and observed a lack of GABAA receptor subunit protection. This investigation demonstrates striking interfacial GABAA receptor subunit selectivity in the native milieu, suggesting that asymmetric occupancy of heteropentameric ion channels by alkylphenol-based anesthetics is sufficient to induce modulation of activity.
机译:静脉麻醉药异丙酚是GABAA受体的正调节剂,但其机制细节(包括相关的结合位点和替代靶点)仍存在争议。在这里,我们对基于烷基酚的麻醉剂与突触膜的结合进行了深入的研究。我们设计,合成和表征了具有化学活性的烷基酚麻醉药(2-((prop-2-yn-1-yloxy)methyl)-5-(3-(trifluoromethyl)-3H-diazirin-3-yl)phenol,AziPm单击(1)),以在小鼠突触体内以天然状态的异丙酚结合蛋白进行基于亲和力的蛋白谱分析(ABPP)。 ABPP策略可捕获约4%的突触体蛋白质组,包括无偏见地捕获五个α或βGABAA受体亚基。缺乏γ2亚基捕获不是由于丰度低引起的。与此相一致,具有炼金术自由能微扰计算的独立分子动力学模拟预测了异丙酚与界面部位的选择性结合,对α/β的亲和力高于含γ的界面。模拟表明氢键是导致GABAA受体亚基界面内丙泊酚选择性结合的关键成分,在丙泊酚和α/β空腔残基之间观察到稳定的氢键,但在γ空腔残基之间未观察到稳定的氢键。我们通过引入氢键-无效的异丙酚类似物作为靶向ABPP的保护配体来证实这一点,并观察到缺乏GABAA受体亚基保护。这项研究表明天然环境中的界面GABA A受体亚基具有惊人的选择性,这表明基于烷基酚的麻醉剂对异戊二烯离子通道的不对称占据足以诱导活性的调节。

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