Co-localization of epithelial sodium channels and glutamate receptors in single taste cells.

W Lin, S C Kinnamon
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引用次数: 7

Abstract

Umami taste is elicited by monosodium glutamate (MSG), a compound consisting of two potent taste stimuli, Na(+) and glutamate. In rat fungiform taste cells, amiloride-sensitive epithelial sodium channels (ENaCs) mediate Na(+) transduction, while glutamate is transduced by a combination of ionotropic and metabotropic glutamate receptors. We used giga-seal whole-cell recording to determine if responses to glutamate and Na(+) occur in the same taste cells. Approximately 68% of the cells tested responded to amiloride, indicating that they express functional ENaCs. Responses to glutamate occurred in about 58% of the cells tested. Interestingly, responses to glutamate occurred in the subset of cells that also responded to amiloride, indicating that glutamate receptors are located preferentially in the same taste cells that also express ENaCs. Further experiments showed that amiloride did not suppress responses to glutamate under voltage-clamp conditions. Taken together, the data suggest that although ENaCs are not involved directly in glutamate transduction, their co-localization with glutamate receptors provides a substrate for the cellular integration of these independent pathways.

上皮钠通道和谷氨酸受体在单个味觉细胞中的共定位。
鲜味是由味精(MSG)引起的,味精是一种由Na(+)和谷氨酸两种有效的味觉刺激组成的化合物。在大鼠蕈状味觉细胞中,酰胺敏感上皮钠通道(ENaCs)介导Na(+)转导,而谷氨酸则由嗜离子性和代谢性谷氨酸受体联合转导。我们使用giga-seal全细胞记录来确定对谷氨酸和Na(+)的反应是否发生在同一味觉细胞中。大约68%的测试细胞对阿米洛利有反应,表明它们表达功能性ENaCs。大约58%的细胞对谷氨酸有反应。有趣的是,对谷氨酸的反应发生在对阿米洛利也有反应的细胞亚群中,这表明谷氨酸受体优先位于同样表达ENaCs的味觉细胞中。进一步的实验表明,在电压箝位条件下,阿米洛利不抑制对谷氨酸的反应。综上所述,这些数据表明,尽管ENaCs不直接参与谷氨酸转导,但它们与谷氨酸受体的共定位为这些独立通路的细胞整合提供了一个底物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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