Suppr超能文献

顶端离子通道在酸味转导中的作用。

Role of apical ion channels in sour taste transduction.

作者信息

Kinnamon S C

机构信息

Department of Anatomy and Neurobiology, Colorado State University, Ft Collins 80523.

出版信息

Ciba Found Symp. 1993;179:201-10; discussion 210-7. doi: 10.1002/9780470514511.ch13.

Abstract

Sour taste perception depends primarily on the concentration of H+ in the taste stimulus. Acid stimuli elicit concentration-dependent action potentials in taste cells. Recent patch-clamp studies suggest that protons depolarize taste cells by direct interaction with apically located ion channels. In Necturus maculosus, the voltage-dependent K+ conductance is restricted to the apical membrane of taste cells. The current flows through a variety of K+ channels with unitary conductances ranging from 30 to 175 pS, all of which are blocked directly by citric acid applied to outside-out or perfused cell-attached patches. In contrast, hamster fungiform taste cells appear to utilize the amiloride-sensitive Na+ channel for acid transduction. Amiloride completely inhibits H+ currents elicited by acid stimuli in isolated taste cells, with an inhibition constant similar to that for amiloride-sensitive Na+ currents (Ki = 0.2 microM). Treatment of isolated taste cells with the bioactive peptide arginine-vasopressin results in similar increases in both the amiloride-sensitive Na+ and H+ currents; the effect is mimicked by 8-bromocyclic AMP. These results suggest that H+ can permeate amiloride-sensitive Na+ channels in hamster fungiform taste cells, contributing to the transduction of sour stimuli.

摘要

酸味感知主要取决于味觉刺激中H⁺的浓度。酸性刺激在味觉细胞中引发浓度依赖性动作电位。最近的膜片钳研究表明,质子通过与位于顶端的离子通道直接相互作用使味觉细胞去极化。在黄斑钝口螈中,电压依赖性K⁺电导局限于味觉细胞的顶端膜。电流通过多种单位电导范围为30至175 pS的K⁺通道流动,所有这些通道都被应用于外翻或灌流细胞贴附膜片的柠檬酸直接阻断。相比之下,仓鼠菌状味觉细胞似乎利用amiloride敏感的Na⁺通道进行酸转导。amiloride完全抑制分离的味觉细胞中由酸刺激引发的H⁺电流,其抑制常数与amiloride敏感的Na⁺电流相似(Ki = 0.2 microM)。用生物活性肽精氨酸加压素处理分离的味觉细胞会导致amiloride敏感的Na⁺电流和H⁺电流类似地增加;8-溴环磷酸腺苷可模拟这种效应。这些结果表明,H⁺可透过仓鼠菌状味觉细胞中amiloride敏感的Na⁺通道,有助于酸味刺激的转导。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验