首页> 美国卫生研究院文献>The Journal of Neuroscience >Amiloride-Insensitive Currents of the Acid-Sensing Ion Channel-2a (ASIC2a)/ASIC2b Heteromeric Sour-Taste Receptor Channel
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Amiloride-Insensitive Currents of the Acid-Sensing Ion Channel-2a (ASIC2a)/ASIC2b Heteromeric Sour-Taste Receptor Channel

机译:酸敏感离子通道2a(ASIC2a)/ ASIC2b异质酸味觉受体通道对Amiloride不敏感的电流

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摘要

Acid-sensing ion channel-2a (ASIC2a) is an amiloride-blockable proton-gated cation channel, probably contributing to sour-taste detection in rat taste cells. To isolate another subtype of the sour-taste receptor, we screened a rat circumvallate papilla cDNA library and identified ASIC2b, an N-terminal splice variant of ASIC2a. Reverse transcription-PCR analyses confirmed the expression of ASIC2b transcripts in the circumvallate papilla and, moreover, demonstrated its expression in the foliate and fungiform papillae. Immunohistochemical analyses revealed that ASIC2b, as well as ASIC2a, was expressed in a subpopulation of taste cells in the circumvallate, foliate, and fungiform papillae, and some of the cells displayed both ASIC2a and ASIC2b immunoreactivities. Subsequent coimmunoprecipitation studies with circumvallate papillae extracts indicated that ASIC2b associated with ASIC2a to form assemblies and, together with our immunohistochemical findings, strongly suggested that both ASIC2 subunits formed heteromeric channels in taste cells in the circumvallate, foliate, and fungiform papillae. Oocyte electrophysiology demonstrated that the ASIC2a/ASIC2b channel generated maximal inward currents at a pH of ≤2.0, which is in agreement with the in vivo pH sensitivity of rat taste cells, and that the amiloride sensitivity of the heteromer decreased with decreasing pH and was almost completely abolished at a pH of 2.0. These findings provide persuasive explanations for the amiloride insensitivity of acid-induced responses of rat taste cells.
机译:酸敏感离子通道2a(ASIC2a)是一种可阻断阿米洛利的质子门控阳离子通道,可能有助于大鼠味觉细胞中的酸味检测。为了分离酸味受体的另一种亚型,我们筛选了大鼠周缘乳头cDNA文库并鉴定了ASIC2b,这是ASIC2a的N端剪接变体。逆转录-PCR分析证实了ASIC2b转录本在周缘乳头中的表达,此外,还证明了其在叶状和真菌状乳头中的表达。免疫组织化学分析显示,ASIC2b和ASIC2a在周缘,叶状和真菌状乳头的味觉细胞亚群中表达,某些细胞同时具有ASIC2a和ASIC2b免疫反应性。随后的与环戊酸乳突提取物的共免疫沉淀研究表明,ASIC2b与ASIC2a结合形成组装,并与我们的免疫组织化学结果一起强烈表明,这两个ASIC2亚基在环戊酸,叶酸和真菌状乳头的味觉细胞中形成异源通道。卵母细胞电生理学表明,ASIC2a / ASIC2b通道在pH≤2.0时产生最大的内向电流,这与大鼠味觉细胞的体内pH敏感性一致,并且异聚体的阿米洛利敏感性随pH降低而降低,几乎在pH值为2.0时完全废除。这些发现为酸诱导的大鼠味觉细胞反应的阿米洛利不敏感性提供了有说服力的解释。

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