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伊维菌素拮抗嘌呤能 P2X4 受体中的乙醇抑制作用。

Ivermectin antagonizes ethanol inhibition in purinergic P2X4 receptors.

机构信息

Titus Family Department of Clinical Pharmacy and Pharmaceutical Economics and Policy, School of Pharmacy, University of Southern California, Los Angeles, California 90033, USA.

出版信息

J Pharmacol Exp Ther. 2010 Sep 1;334(3):720-8. doi: 10.1124/jpet.110.167908. Epub 2010 Jun 11.

Abstract

ATP-gated purinergic P2X4 receptors (P2X4Rs) are expressed in the central nervous system and are sensitive to ethanol at intoxicating concentrations. P2XRs are trimeric; each subunit consists of two transmembrane (TM) alpha-helical segments, a large extracellular domain, and intracellular amino and carboxyl terminals. Recent work indicates that position 336 (Met336) in the TM2 segment is critical for ethanol modulation of P2X4Rs. The anthelmintic medication ivermectin (IVM) positively modulates P2X4Rs and is believed to act in the same region as ethanol. The present study tested the hypothesis that IVM can antagonize ethanol action. We investigated IVM and ethanol effects in wild-type and mutant P2X4Rs expressed in Xenopus oocytes by using a two-electrode voltage clamp. IVM antagonized ethanol-induced inhibition of P2X4Rs in a concentration-dependent manner. The size and charge of substitutions at position 336 affected P2X4R sensitivity to both ethanol and IVM. The first molecular model of the rat P2X4R, built onto the X-ray crystal structure of zebrafish P2X4R, revealed a pocket formed by Asp331, Met336, Trp46, and Trp50 that may play a role in the actions of ethanol and IVM. These findings provide the first evidence for IVM antagonism of ethanol effects in P2X4Rs and suggest that the antagonism results from the ability of IVM to interfere with ethanol action on the putative pocket at or near position 336. Taken with the building evidence supporting a role for P2X4Rs in ethanol intake, the present findings suggest that the newly identified alcohol pocket is a potential site for development of medication for alcohol use disorders.

摘要

三磷酸腺苷门控嘌呤能 P2X4 受体 (P2X4Rs) 在中枢神经系统中表达,并且对致醉浓度的乙醇敏感。P2XR 是三聚体;每个亚基由两个跨膜 (TM) α-螺旋片段、一个大的细胞外结构域以及细胞内的氨基和羧基末端组成。最近的工作表明 TM2 片段中的 336 位 (Met336) 对于 P2X4Rs 对乙醇的调制至关重要。驱虫药伊维菌素 (IVM) 正向调节 P2X4Rs,并且被认为与乙醇在同一区域起作用。本研究通过使用双电极电压钳,在 Xenopus oocytes 中表达的野生型和突变型 P2X4Rs 中测试了 IVM 可以拮抗乙醇作用的假设。我们通过双电极电压钳研究了 IVM 和乙醇对在 Xenopus oocytes 中表达的野生型和突变型 P2X4Rs 的影响。IVM 以浓度依赖的方式拮抗乙醇诱导的 P2X4R 抑制。336 位取代的大小和电荷会影响 P2X4R 对乙醇和 IVM 的敏感性。基于斑马鱼 P2X4R 的 X 射线晶体结构构建的大鼠 P2X4R 的第一个分子模型揭示了由 Asp331、Met336、Trp46 和 Trp50 形成的口袋,该口袋可能在乙醇和 IVM 的作用中发挥作用。这些发现为 IVM 拮抗 P2X4Rs 中乙醇作用提供了首个证据,并表明拮抗作用是由于 IVM 能够干扰乙醇在 336 位或附近的假定口袋中的作用。结合支持 P2X4Rs 在乙醇摄入中起作用的越来越多的证据,本研究结果表明,新鉴定的酒精口袋可能是开发用于治疗酒精使用障碍的药物的潜在靶点。

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