Department of Neuroscience, The Ohio State University School of Medicine, Ohio State University, Columbus, Ohio 43210, USA.
J Biol Chem. 2010 Dec 31;285(53):41852-62. doi: 10.1074/jbc.M110.171330. Epub 2010 Oct 29.
The acid-sensing ion channels (ASICs) are proton-gated cation channels activated when extracellular pH declines. In rodents, the Accn2 gene encodes transcript variants ASIC1a and ASIC1b, which differ in the first third of the protein and display distinct channel properties. In humans, ACCN2 transcript variant 2 (hVariant 2) is homologous to mouse ASIC1a. In this article, we study two other human ACCN2 transcript variants. Human ACCN2 transcript variant 1 (hVariant 1) is not present in rodents and contains an additional 46 amino acids directly preceding the proposed channel gate. We report that hVariant 1 does not produce proton-gated currents under normal conditions when expressed in heterologous systems. We also describe a third human ACCN2 transcript variant (hVariant 3) that is similar to rodent ASIC1b. hVariant 3 is more abundantly expressed in dorsal root ganglion compared with brain and shows basic channel properties analogous to rodent ASIC1b. Yet, proton-gated currents from hVariant 3 are significantly more permeable to calcium than either hVariant 2 or rodent ASIC1b, which shows negligible calcium permeability. hVariant 3 also displays a small acid-dependent sustained current. Such a sustained current is particularly intriguing as ASIC1b is thought to play a role in sensory transduction in rodents. In human DRG neurons, hVariant 3 could induce sustained calcium influx in response to acidic pH and make a major contribution to acid-dependent sensations, such as pain.
酸敏感离子通道(ASICs)是一种质子门控阳离子通道,当细胞外 pH 值下降时被激活。在啮齿动物中,Accn2 基因编码转录变体 ASIC1a 和 ASIC1b,它们在蛋白的前三分一区域存在差异,表现出不同的通道特性。在人类中,ACCN2 转录变体 2(hVariant 2)与小鼠 ASIC1a 同源。在本文中,我们研究了另外两种人类 ACCN2 转录变体。人类 ACCN2 转录变体 1(hVariant 1)在啮齿动物中不存在,并且在拟议的通道门之前直接包含另外 46 个氨基酸。我们报告说,当在异源系统中表达时,hVariant 1 在正常条件下不会产生质子门控电流。我们还描述了第三种人类 ACCN2 转录变体(hVariant 3),它与小鼠 ASIC1b 相似。与大脑相比,hVariant 3 在背根神经节中表达更为丰富,并且表现出类似于小鼠 ASIC1b 的基本通道特性。然而,来自 hVariant 3 的质子门控电流对钙的通透性明显高于 hVariant 2 或小鼠 ASIC1b,后者对钙的通透性可以忽略不计。hVariant 3 还显示出小的酸依赖性持续电流。这种持续电流尤其引人注目,因为 ASIC1b 被认为在啮齿动物的感觉转导中发挥作用。在人类背根神经节神经元中,hVariant 3 可以响应酸性 pH 值诱导持续的钙内流,并对酸依赖性感觉(如疼痛)做出重大贡献。