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表达酸敏感离子通道3的小鼠感觉神经元亚群的鉴定与特性分析

Identification and characterization of a subset of mouse sensory neurons that express acid-sensing ion channel 3.

作者信息

Lin Y-W, Min M-Y, Lin C-C, Chen W-N, Wu W-L, Yu H-M, Chen C-C

机构信息

Institute of Biomedical Sciences, Academia Sinica, Taipei 115, Taiwan, Republic of China.

出版信息

Neuroscience. 2008 Jan 24;151(2):544-57. doi: 10.1016/j.neuroscience.2007.10.020. Epub 2007 Nov 1.

Abstract

Acid-sensing ion channel 3 (ASIC3) is the most sensitive acid sensor in sensory neurons that innervate into skin, muscle, heart, and visceral tissues. ASIC3 is involved in ischemia sensing, nociception, mechanosensation, and hearing, but how ASIC3-expressing neurons differ in their firing properties is still unknown. We hypothesized that ASIC3-expressing neurons have specialized firing properties, which, coupled with the heterogeneity of acid-sensing properties, accounts for various physiological roles. Here, we successfully identified ASIC3-expressing lumbar dorsal root ganglion (DRG) neurons whose transient proton-gated currents were blocked by salicylic acid (SA). The salicylic acid-sensitive (SAS) neurons did not exist in DRG neurons of mice lacking ASIC3. SAS neurons expressed distinct electrophysiological properties as compared with other DRG neurons. Especially, SAS neurons fired action potentials (APs) with large overshoot and long afterhyperpolarization duration, which suggests that they belong to nociceptors. SAS neurons also exhibited multiple nociceptor markers such as capsaicin response (38%), action potential (AP) with inflection (35%), or tetrodotoxin resistance (31%). Only in SAS neurons but not other DRG neurons was afterhyperpolarization duration correlated with resting membrane potential and AP duration. Our studies reveal a unique feature of ASIC3-expressing DRG neurons and a basis for their heterogeneous functions.

摘要

酸敏感离子通道3(ASIC3)是支配皮肤、肌肉、心脏和内脏组织的感觉神经元中最敏感的酸传感器。ASIC3参与缺血感知、伤害感受、机械感觉和听觉,但表达ASIC3的神经元在放电特性上如何不同仍不清楚。我们假设表达ASIC3的神经元具有特殊的放电特性,这与酸敏感特性的异质性相结合,解释了其各种生理作用。在这里,我们成功鉴定出表达ASIC3的腰段背根神经节(DRG)神经元,其瞬时质子门控电流被水杨酸(SA)阻断。缺乏ASIC3的小鼠的DRG神经元中不存在水杨酸敏感(SAS)神经元。与其他DRG神经元相比,SAS神经元表现出不同的电生理特性。特别是,SAS神经元发放的动作电位(AP)具有大的超射和长的后超极化持续时间,这表明它们属于伤害感受器。SAS神经元还表现出多种伤害感受器标记物,如辣椒素反应(38%)、有拐点的动作电位(AP)(35%)或河豚毒素抗性(31%)。仅在SAS神经元而非其他DRG神经元中,后超极化持续时间与静息膜电位和AP持续时间相关。我们的研究揭示了表达ASIC3的DRG神经元的独特特征及其异质功能的基础。

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