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rP2X3受体第15位的疏水残基减缓脱敏作用,并揭示了对药理分析和高通量筛选有益的特性。

A hydrophobic residue in position 15 of the rP2X3 receptor slows desensitization and reveals properties beneficial for pharmacological analysis and high-throughput screening.

作者信息

Hausmann Ralf, Bahrenberg Gregor, Kuhlmann Daniel, Schumacher Michaela, Braam Ursula, Bieler Dagmar, Schlusche Ilka, Schmalzing Günther

机构信息

Department of Molecular Pharmacology, Medical Faculty of the RWTH Aachen University, Wendlingweg 2, 52074 Aachen, Germany.

Grünenthal GmbH, Global Drug Discovery, Department of Molecular Pharmacology, Zieglerstrasse 6, 52078 Aachen, Germany.

出版信息

Neuropharmacology. 2014 Apr;79:603-15. doi: 10.1016/j.neuropharm.2014.01.010. Epub 2014 Jan 19.

Abstract

The homotrimeric P2X3 subtype, one of the seven members of the ATP-gated P2X receptor family, plays a role in sensory neurotransmission, including nociception. To overcome the bias resulting from fast desensitization of the P2X3 receptor in dose-response analyses, a non-desensitizing P2X2-X3 receptor chimera has been repeatedly used as a surrogate for the P2X3 receptor for functional analysis. Here, we show that only three of the P2X2-specific amino acid residues of the P2X2-X3 chimera, (19)P(21)V(22)I, are needed to confer a slowly desensitizing phenotype to the P2X3 receptor. The strongest delay in desensitization of the P2X3 receptor by a single residue was observed when (15)Ser was replaced by Val or another hydrophobic residue. Pharmacologically, the S(15)V-rP2X3 mutant behaved similarly to the wt-P2X3 receptor. Analysis of the S(15)V-rP2X3 receptor in 1321N1 astrocytoma cells by a common calcium-imaging-based assay showed 10-fold higher calcium transients relative to those of the wt-rP2X3 receptor. The S(15)V-rP2X3 cell line enabled reliable analysis of antagonistic potencies and correctly reported the mechanism of action of the P2X3 receptor antagonists A-317491 and TNP-ATP by a calcium-imaging assay. Together, these data suggest that the S(15)V-rP2X3 mutant may be suitable not only for automated fluorescence-based screening of molecule libraries for identification of lead compounds but also for facilitated pharmacological characterization of specific P2X3 receptor ligands. We suggest that the mechanism of desensitization of the P2X3 receptor may involve the movement of an N-terminal inactivation particle, in analogy to the "hinged-lid" or "ball and chain" mechanisms of voltage-gated NaV and Shaker KV channels, respectively.

摘要

同源三聚体P2X3亚型是ATP门控P2X受体家族的七个成员之一,在感觉神经传递(包括伤害感受)中发挥作用。为了克服剂量反应分析中P2X3受体快速脱敏导致的偏差,一种不脱敏的P2X2 - X3受体嵌合体已被反复用作P2X3受体的替代物进行功能分析。在此,我们表明,P2X2 - X3嵌合体中仅三个P2X2特异性氨基酸残基(19)P(21)V(22)I就足以赋予P2X3受体缓慢脱敏的表型。当(15)Ser被Val或另一个疏水残基取代时,观察到单个残基对P2X3受体脱敏的最强延迟。在药理学上,S(15)V - rP2X3突变体的行为与野生型P2X3受体相似。通过基于钙成像的常见检测方法分析1321N1星形细胞瘤细胞中的S(15)V - rP2X3受体,发现其钙瞬变相对于野生型rP2X3受体高10倍。S(15)V - rP2X3细胞系能够可靠地分析拮抗效力,并通过钙成像检测正确报告P2X3受体拮抗剂A - 317491和TNP - ATP的作用机制。总之,这些数据表明,S(15)V - rP2X3突变体不仅可能适用于基于自动荧光的分子文库筛选以鉴定先导化合物,还适用于促进特定P2X3受体配体的药理学表征。我们认为,P2X3受体的脱敏机制可能涉及N端失活颗粒的移动,这分别类似于电压门控NaV和Shaker KV通道的“铰链盖”或“球链”机制。

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