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表达氨氯地平敏感钠电流的大鼠菌状味蕾细胞中的钙稳态调节剂1样电流

Calcium Homeostasis Modulator 1-Like Currents in Rat Fungiform Taste Cells Expressing Amiloride-Sensitive Sodium Currents.

作者信息

Bigiani Albertino

机构信息

Dipartimento di Scienze Biomediche, Metaboliche e Neuroscienze, Università di Modena e Reggio Emilia, Via G. Campi 287, 41125 Modena, Italy.

出版信息

Chem Senses. 2017 May 1;42(4):343-359. doi: 10.1093/chemse/bjx013.

Abstract

Salt reception by taste cells is still the less understood transduction process occurring in taste buds, the peripheral sensory organs for the detection of food chemicals. Although there is evidence suggesting that the epithelial sodium channel (ENaC) works as sodium receptor, yet it is not clear how salt-detecting cells signal the relevant information to nerve endings. Taste cells responding to sweet, bitter, and umami substances release ATP as neurotransmitter through a nonvesicular mechanism. Three different channel proteins have been proposed as conduit for ATP secretion: pannexin channels, connexin hemichannels, and calcium homeostasis modulator 1 (CALHM1) channels. In heterologous expression systems, these channels mediate outwardly rectifying membrane currents with distinct biophysical and pharmacological properties. I therefore tested whether also salt-detecting taste cells were endowed with these currents. To this aim, I applied the patch-clamp techniques to single cells in isolated taste buds from rat fungiform papillae. Salt-detecting cells were functionally identified by exploiting the effect of amiloride, which induces a current response by shutting down ENaCs. I looked for the presence of outwardly rectifying currents by using appropriate voltage-clamp protocols and specific pharmacological tools. I found that indeed salt-detecting cells possessed these currents with properties consistent with the presence, at least in part, of CALHM1 channels. Unexpectedly, CALHM1-like currents in taste cells were potentiated by known blockers of pannexin, suggesting a possible inhibitory action of this protein on CALMH1. These findings indicate that communication between salt-detecting cells and nerve endings might involve ATP release by CALMH1 channels.

摘要

味觉细胞对盐的感受仍然是味蕾(检测食物化学成分的外周感觉器官)中理解较少的转导过程。尽管有证据表明上皮钠通道(ENaC)作为钠受体发挥作用,但尚不清楚盐检测细胞如何将相关信息传递给神经末梢。对甜味、苦味和鲜味物质作出反应的味觉细胞通过非囊泡机制释放ATP作为神经递质。三种不同的通道蛋白已被提出作为ATP分泌的通道:泛连接蛋白通道、连接蛋白半通道和钙稳态调节剂1(CALHM1)通道。在异源表达系统中,这些通道介导具有独特生物物理和药理学特性的外向整流膜电流。因此,我测试了盐检测味觉细胞是否也具有这些电流。为此,我将膜片钳技术应用于大鼠菌状乳头分离味蕾中的单细胞。通过利用氨氯吡咪的作用在功能上鉴定盐检测细胞,氨氯吡咪通过关闭ENaC诱导电流反应。我使用适当的电压钳协议和特定的药理学工具寻找外向整流电流的存在。我发现盐检测细胞确实具有这些电流,其特性至少部分与CALHM1通道的存在一致。出乎意料的是,味觉细胞中类似CALHM1的电流被泛连接蛋白的已知阻滞剂增强,表明该蛋白对CALMH1可能具有抑制作用。这些发现表明盐检测细胞与神经末梢之间的通讯可能涉及CALMH1通道释放ATP。

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