Neurobiology Group, International School for Advanced Studies, Trieste, Italy.
Center for Regenerative Medicine, Boston University School of Medicine, Boston, MA.
J Gen Physiol. 2019 Jul 1;151(7):954-966. doi: 10.1085/jgp.201812310. Epub 2019 May 2.
Glial-like supporting (or sustentacular) cells are important constituents of the olfactory epithelium that are involved in several physiological processes such as production of endocannabinoids, insulin, and ATP and regulation of the ionic composition of the mucus layer that covers the apical surface of the olfactory epithelium. Supporting cells express metabotropic P2Y purinergic receptors that generate ATP-induced Ca signaling through the activation of a PLC-mediated cascade. Recently, we reported that a subpopulation of supporting cells expresses also the Ca-activated Cl channel TMEM16A. Here, we sought to extend our understanding of a possible physiological role of this channel in the olfactory system by asking whether Ca can activate Cl currents mediated by TMEM16A. We use whole-cell patch-clamp analysis in slices of the olfactory epithelium to measure dose-response relations in the presence of various intracellular Ca concentrations, ion selectivity, and blockage. We find that knockout of TMEM16A abolishes Ca-activated Cl currents, demonstrating that TMEM16A is essential for these currents in supporting cells. Also, by using extracellular ATP as physiological stimuli, we found that the stimulation of purinergic receptors activates a large TMEM16A-dependent Cl current, indicating a possible role of TMEM16A in ATP-mediated signaling. Altogether, our results establish that TMEM16A-mediated currents are functional in olfactory supporting cells and provide a foundation for future work investigating the precise physiological role of TMEM16A in the olfactory system.
胶质样支持(或滋养)细胞是嗅上皮的重要组成部分,参与多种生理过程,如内源性大麻素、胰岛素和 ATP 的产生,以及调节覆盖嗅上皮顶表面的黏液层的离子组成。支持细胞表达代谢型 P2Y 嘌呤能受体,通过激活 PLC 介导的级联反应产生 ATP 诱导的 Ca 信号。最近,我们报道了支持细胞的一个亚群也表达 Ca 激活的 Cl 通道 TMEM16A。在这里,我们通过询问 Ca 是否可以激活 TMEM16A 介导的 Cl 电流,试图扩展我们对该通道在嗅觉系统中可能的生理作用的理解。我们使用嗅上皮切片的全细胞膜片钳分析来测量在各种细胞内 Ca 浓度、离子选择性和阻断存在下的剂量反应关系。我们发现 TMEM16A 的敲除消除了 Ca 激活的 Cl 电流,表明 TMEM16A 是支持细胞中这些电流所必需的。此外,通过使用细胞外 ATP 作为生理刺激物,我们发现嘌呤能受体的刺激激活了一个大的 TMEM16A 依赖性 Cl 电流,表明 TMEM16A 在 ATP 介导的信号转导中可能发挥作用。总之,我们的结果表明 TMEM16A 介导的电流在嗅觉支持细胞中是功能性的,并为未来研究 TMEM16A 在嗅觉系统中的精确生理作用奠定了基础。