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全电钙非依赖性信号转导介导味蕾中钠味觉的吸引力。

All-Electrical Ca-Independent Signal Transduction Mediates Attractive Sodium Taste in Taste Buds.

机构信息

Department of Molecular Cell Physiology, Kyoto Prefectural University of Medicine, Kyoto, Kyoto 602-8566, Japan.

Center for Meso-Bio Single-Molecule Imaging, Institute for Integrated Cell-Material Sciences, Kyoto University, Kyoto, Kyoto 606-8501, Japan.

出版信息

Neuron. 2020 Jun 3;106(5):816-829.e6. doi: 10.1016/j.neuron.2020.03.006. Epub 2020 Mar 30.

Abstract

Sodium taste regulates salt intake. The amiloride-sensitive epithelial sodium channel (ENaC) is the Na sensor in taste cells mediating attraction to sodium salts. However, cells and intracellular signaling underlying sodium taste in taste buds remain long-standing enigmas. Here, we show that a subset of taste cells with ENaC activity fire action potentials in response to ENaC-mediated Na influx without changing the intracellular Ca concentration and form a channel synapse with afferent neurons involving the voltage-gated neurotransmitter-release channel composed of calcium homeostasis modulator 1 (CALHM1) and CALHM3 (CALHM1/3). Genetic elimination of ENaC in CALHM1-expressing cells as well as global CALHM3 deletion abolished amiloride-sensitive neural responses and attenuated behavioral attraction to NaCl. Together, sodium taste is mediated by cells expressing ENaC and CALHM1/3, where oral Na entry elicits suprathreshold depolarization for action potentials driving voltage-dependent neurotransmission via the channel synapse. Thus, all steps in sodium taste signaling are voltage driven and independent of Ca signals. This work also reveals ENaC-independent salt attraction.

摘要

钠味觉调节盐摄入量。味觉细胞中的阿米洛利敏感上皮钠离子通道(ENaC)是介导对钠盐吸引力的 Na 传感器。然而,味蕾中钠味觉背后的细胞和细胞内信号仍然是长期存在的谜。在这里,我们表明,具有 ENaC 活性的一组味觉细胞在不改变细胞内 Ca 浓度的情况下,对 ENaC 介导的 Na 内流作出反应,产生动作电位,并与传入神经元形成通道突触,涉及由钙稳态调节剂 1(CALHM1)和 CALHM3(CALHM1/3)组成的电压门控神经递质释放通道。CALHM1 表达细胞中 ENaC 的基因缺失以及全球 CALHM3 缺失消除了阿米洛利敏感的神经反应,并减弱了对 NaCl 的行为吸引力。总之,钠味觉是由表达 ENaC 和 CALHM1/3 的细胞介导的,其中口腔 Na 进入引发超阈值去极化,为通过通道突触驱动电压依赖性神经传递的动作电位提供动力。因此,钠味觉信号传递的所有步骤都是电压驱动的,与 Ca 信号无关。这项工作还揭示了 ENaC 独立的盐吸引力。

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