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Cell-to-cell communication in intact taste buds through ATP signalling from pannexin 1 gap junction hemichannels

机译:通过pannexin 1间隙连接半通道的ATP信号传导完整味蕾中的细胞间通讯

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摘要

Isolated taste cells, taste buds and strips of lingual tissue from taste papillae secrete ATP upon taste stimulation. Taste bud receptor (Type II) cells have been identified as the source of ATP secretion. Based on studies on isolated taste buds and single taste cells, we have postulated that ATP secreted from receptor cells via pannexin 1 hemichannels acts within the taste bud to excite neighbouring presynaptic (Type III) cells. This hypothesis, however, remains to be tested in intact tissues. In this report we used confocal Ca2+ imaging and lingual slices containing intact taste buds to test the hypothesis of purinergic signalling between taste cells in a more integral preparation. Incubating lingual slices with apyrase reversibly blocked cell-to-cell communication between receptor cells and presynaptic cells, consistent with ATP being the transmitter. Inhibiting pannexin 1 gap junction hemichannels with CO2-saturated buffer or probenecid significantly reduced cell–cell signalling between receptor cells and presynaptic cells. In contrast, anandamide, a blocker of connexin gap junction channels, had no effect of cell-to-cell communication in taste buds. These findings are consistent with the model for peripheral signal processing via ATP and pannexin 1 hemichannels in mammalian taste buds.
机译:味觉刺激后,来自味觉乳头的分离的味觉细胞,味蕾和舌组织带会分泌ATP。味蕾受体(II型)细胞已被确定为ATP分泌的来源。基于对分离的味蕾和单个味觉细胞的研究,我们推测通过pannexin 1半通道从受体细胞分泌的ATP在味蕾内起作用,以激发邻近的突触前(III型)细胞。但是,该假设有待在完整组织中进行检验。在本报告中,我们使用共焦Ca 2 + 成像和包含完整味蕾的舌片来测试更完整的制剂中味细胞之间嘌呤能信号传导的假说。用腺苷三磷酸酶孵育舌片可逆地阻断受体细胞与突触前细胞之间的细胞间通讯,这与ATP是递质一致。用CO2饱和的缓冲液或丙磺舒抑制pannexin 1间隙连接半通道可显着减少受体细胞与突触前细胞之间的细胞间信号传导。相比之下,连接蛋白间隙连接通道的阻滞剂anandamide对味蕾中的细胞间通讯没有影响。这些发现与哺乳动物味蕾中通过ATP和pannexin 1半通道进行外围信号处理的模型一致。

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