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Regulation of GABAA Receptor Dynamics by Interaction with Purinergic P2X2 Receptors

机译:用嘌呤能P2X2受体的相互作用调节GABAA受体动力学

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γ-Aminobutyric acid type A receptors (GABAARs) in the spinal cord are evolving as an important target for drug development against pain. Purinergic P2X2 receptors (P2X2Rs) are also expressed in spinal cord neurons and are known to cross-talk with GABAARs. Here, we investigated a possible “dynamic” interaction between GABAARs and P2X2Rs using co-immunoprecipitation and fluorescence resonance energy transfer (FRET) studies in human embryonic kidney (HEK) 293 cells along with co-localization and single particle tracking studies in spinal cord neurons. Our results suggest that a significant proportion of P2X2Rs forms a transient complex with GABAARs inside the cell, thus stabilizing these receptors and using them for co-trafficking to the cell surface, where P2X2Rs and GABAARs are primarily located extra-synaptically. Furthermore, agonist-induced activation of P2X2Rs results in a Ca2+-dependent as well as an apparently Ca2+-independent increase in the mobility and an enhanced degradation of GABAARs, whereas P2X2Rs are stabilized and form larger clusters. Antagonist-induced blocking of P2XRs results in co-stabilization of this receptor complex at the cell surface. These results suggest a novel mechanism where association of P2X2Rs and GABAARs could be used for specific targeting to neuronal membranes, thus providing an extrasynaptic receptor reserve that could regulate the excitability of neurons. We further conclude that blocking the excitatory activity of excessively released ATP under diseased state by P2XR antagonists could simultaneously enhance synaptic inhibition mediated by GABAARs.
机译:γ-氨基丁酸在脊髓中造成的受体(GABAARS)是作为对疼痛的药物发育的重要靶标。嘌呤能P2X2受体(P2X2RS)也在脊髓神经元中表达,并且已知用GABAARS串扰。在这里,我们使用人胚胎肾(HEK)293细胞中的共免疫沉淀和荧光共振能量转移(FRER)研究以及脊髓神经元的共定位和单颗粒跟踪研究,研究了GABAARS和P2X2R之间的可能的“动态”相互作用。 。我们的研究结果表明,大量p2x2rs与细胞内的GabaARs形成瞬态络合物,从而稳定这些受体并使用它们用于共贩运到细胞表面,其中P2x2R和GabaAR主要位于超突触外。此外,激动剂诱导的P2X2RS活化导致Ca2 + - 依存以及显然Ca2 + -Inceptent的迁移率和加剧的增强的降解增加,而P2X2RS稳定并形成较大的簇。对拮抗剂诱导的P2XR阻断导致该受体复合物在细胞表面的共稳定。这些结果表明了一种新的方法,其中P2X2RS和GABAAR的关联可用于特异性靶向神经元膜,从而提供额外的受体储备,可以调节神经元的兴奋性。我们进一步得出结论,通过P2XR拮抗剂阻断患病状态下过度释放的ATP的兴奋活性可以同时增强由加巴尔斯介导的突触抑制。

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