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氨氯地平敏感钠电流和电压门控钙电流在大鼠菌状味觉细胞中的定位。

Localization of amiloride-sensitive sodium current and voltage-gated calcium currents in rat fungiform taste cells.

作者信息

Bigiani Albertino, Cuoghi Valeria

机构信息

Dipartimento di Scienze Biomediche, Università di Modena e Reggio Emilia, Modena, Italy.

出版信息

J Neurophysiol. 2007 Oct;98(4):2483-7. doi: 10.1152/jn.00716.2007. Epub 2007 Aug 8.

Abstract

Recent studies have shown that taste cells transducing bitter, sweet, and umami stimuli do not possess high-threshold voltage-gated calcium channels required for synaptic transmission at conventional synapses, suggesting some sort of signal processing inside taste buds prior to the activation of nerve endings. To evaluate whether this is a general paradigm for the physiology of taste reception, we studied the transduction pathway underlying the detection of sodium ions (salty stimulus). In laboratory rodents, Na(+) is thought to be transduced, at least in part, through amiloride-sensitive sodium channels (ASSCs). Therefore we used the patch-clamp techniques to analyze the occurrence pattern of amiloride-sensitive sodium currents and voltage-gated calcium currents (both low-voltage-activated T-type current and high-voltage-activated L-type current) among taste cells in rat fungiform papillae. Because taste cells turnover, we focused our attention on cells possessing large voltage-gated sodium currents, a sign of "mature" cells. We found that cells expressing functional ASSCs either did not possess any calcium currents or exhibited only T-type calcium currents, which is believed to play a role in repetitive firing. On the contrary, cells lacking functional ASSCs were endowed with L-type calcium currents, which are thought to mediate calcium influx required for neurotransmitter exocytosis. Therefore our data suggest that sodium-detecting cells are unlikely to use conventional synaptic communication to transfer taste information to nerve endings. Our findings on sodium taste detection support the recent model of taste transduction, involving separate groups of taste cells: chemosensitive cells and cells forming conventional synapses.

摘要

最近的研究表明,转导苦味、甜味和鲜味刺激的味觉细胞不具备传统突触处突触传递所需的高阈值电压门控钙通道,这表明在神经末梢激活之前,味蕾内部存在某种信号处理过程。为了评估这是否是味觉感受生理学的一般模式,我们研究了钠离子(咸味刺激)检测背后的转导途径。在实验啮齿动物中,Na(+) 至少部分地被认为是通过amiloride敏感钠通道(ASSCs)进行转导的。因此,我们使用膜片钳技术分析了大鼠菌状乳头味觉细胞中amiloride敏感钠电流和电压门控钙电流(包括低电压激活的T型电流和高电压激活的L型电流)的出现模式。由于味觉细胞会更新换代,我们将注意力集中在具有大电压门控钠电流的细胞上,这是“成熟”细胞的标志。我们发现,表达功能性ASSCs的细胞要么不具有任何钙电流,要么仅表现出T型钙电流,据信T型钙电流在重复放电中起作用。相反,缺乏功能性ASSCs的细胞具有L型钙电流,据认为L型钙电流介导神经递质胞吐所需的钙内流。因此,我们的数据表明,检测钠离子的细胞不太可能使用传统的突触通讯将味觉信息传递给神经末梢。我们关于钠味检测的发现支持了最近的味觉转导模型,该模型涉及不同组的味觉细胞:化学感受细胞和形成传统突触的细胞。

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