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P物质通过HEK293细胞中的瞬时受体电位(TRP)通道诱发阳离子电流。

Substance P evokes cation currents through TRP channels in HEK293 cells.

作者信息

Oh E J, Gover T D, Cordoba-Rodriguez R, Weinreich D

机构信息

Pharmacology and Experimental Therapeutics, University of Maryland Medical School, Baltimore, Maryland 21201-1559, USA.

出版信息

J Neurophysiol. 2003 Sep;90(3):2069-73. doi: 10.1152/jn.00026.2003.

Abstract

Activation of any of the three known tachykinin receptors (NK1R, -2R, or -3R) can cause a rise in [Ca2+]i via a pertussis toxin-insensitive heterotrimeric G protein, Gq/G11, activation of phospholipase C (PLC), and a membrane depolarization. Tachykinins can depolarize neurons by two distinct mechanisms: 1) they reduce a resting K+ current in many neurons or 2) in parasympathetic and vagal primary sensory neurons, they activate a nonspecific cation current (Icat). Transient receptor potential channels (TRPC) are nonspecific cation channels that can be activated by a rise in [Ca2+]i in a PLC-dependent manner. The present work tests whether NK2R can signal TRPC. We applied standard whole cell patch-clamp recordings to HEK293 cells stably transfected with the human TRP3 channels (TRP3C), and transiently transfected with a functional NK2R-EGFP. Bath applied Substance P (SP, 1 microM) induced an Icat in the cells expressing both TRP3C and NK2R. Icat reached its peak value in approximately 3 min (195 +/- 120.0 s, mean +/- SE, n = 20), had a peak density of 11.3 +/- 3.48 pA/pF (n = 24), and was blocked by an NK2R-specific antagonist (SR48968, 100 nM). The Erev value for the SP current was 6.8 +/- 7.66 mV (n = 6), suggestive of a nonspecific cation channel. Icat was not measurable in TRP3C-expressing HEK293 cells without NK2R expression (n = 6) or in wild-type HEK293 cells with NK2R expression (n = 12). These data indicate that NK2R can be functionally coupled to TRP channels in HEK293 cells and suggest that SP-induced cation currents in vagal primary sensory neurons might be mediated by TRPC.

摘要

三种已知的速激肽受体(NK1R、NK2R或NK3R)中的任何一种被激活,都可通过一种对百日咳毒素不敏感的异源三聚体G蛋白Gq/G11、磷脂酶C(PLC)的激活以及膜去极化,导致细胞内钙离子浓度([Ca2+]i)升高。速激肽可通过两种不同机制使神经元去极化:1)它们可降低许多神经元中的静息钾电流;2)在副交感神经和迷走神经初级感觉神经元中,它们可激活一种非特异性阳离子电流(Icat)。瞬时受体电位通道(TRPC)是非特异性阳离子通道,可通过PLC依赖的方式被细胞内钙离子浓度升高激活。本研究检测NK2R是否能向TRPC发出信号。我们对稳定转染人TRP3通道(TRP3C)并瞬时转染功能性NK2R-EGFP的HEK293细胞进行标准的全细胞膜片钳记录。浴槽中加入P物质(SP,1微摩尔)可在同时表达TRP3C和NK2R的细胞中诱导出Icat。Icat在约3分钟(195±120.0秒,平均值±标准误,n = 20)达到峰值,峰值密度为11.3±3.48皮安/皮法(n = 24),并被NK2R特异性拮抗剂(SR48968,100纳摩尔)阻断。SP电流的反转电位(Erev)值为6.8±7.66毫伏(n = 6),提示为非特异性阳离子通道。在未表达NK2R的TRP3C转染HEK293细胞(n = 6)或表达NK2R的野生型HEK293细胞(n = 12)中,无法检测到Icat。这些数据表明,NK2R在HEK293细胞中可与TRP通道发生功能偶联,并提示迷走神经初级感觉神经元中SP诱导的阳离子电流可能由TRPC介导。

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