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转导通道TRPM5由味觉细胞内的钙门控。

The transduction channel TRPM5 is gated by intracellular calcium in taste cells.

作者信息

Zhang Zheng, Zhao Zhen, Margolskee Robert, Liman Emily

机构信息

Department of Biological Sciences and Program in Neuroscience, University of Southern California, Los Angeles, California 90089, USA.

出版信息

J Neurosci. 2007 May 23;27(21):5777-86. doi: 10.1523/JNEUROSCI.4973-06.2007.

Abstract

Bitter, sweet, and umami tastants are detected by G-protein-coupled receptors that signal through a common second-messenger cascade involving gustducin, phospholipase C beta2, and the transient receptor potential M5 (TRPM5) ion channel. The mechanism by which phosphoinositide signaling activates TRPM5 has been studied in heterologous cell types with contradictory results. To resolve this issue and understand the role of TRPM5 in taste signaling, we took advantage of mice in which the TRPM5 promoter drives expression of green fluorescent protein and mice that carry a targeted deletion of the TRPM5 gene to unequivocally identify TRPM5-dependent currents in taste receptor cells. Our results show that brief elevation of intracellular inositol trisphosphate or Ca2+ is sufficient to gate TRPM5-dependent currents in intact taste cells, but only intracellular Ca2+ is able to activate TRPM5-dependent currents in excised patches. Detailed study in excised patches showed that TRPM5 forms a nonselective cation channel that is half-activated by 8 microM Ca2+ and that desensitizes in response to prolonged exposure to intracellular Ca2+. In addition to channels encoded by the TRPM5 gene, we found that taste cells have a second type of Ca2+-activated nonselective cation channel that is less sensitive to intracellular Ca2+. These data constrain proposed models for taste transduction and suggest a link between receptor signaling and membrane potential in taste cells.

摘要

苦味、甜味和鲜味味觉剂由G蛋白偶联受体检测,这些受体通过一个共同的第二信使级联发出信号,该级联涉及味导素、磷脂酶Cβ2和瞬时受体电位M5(TRPM5)离子通道。磷酸肌醇信号传导激活TRPM5的机制已在异源细胞类型中进行了研究,但结果相互矛盾。为了解决这个问题并了解TRPM5在味觉信号传导中的作用,我们利用了TRPM5启动子驱动绿色荧光蛋白表达的小鼠以及携带TRPM5基因靶向缺失的小鼠,以明确识别味觉受体细胞中依赖TRPM5的电流。我们的结果表明,细胞内三磷酸肌醇或Ca2+的短暂升高足以开启完整味觉细胞中依赖TRPM5的电流,但只有细胞内Ca2+能够在切除的膜片中激活依赖TRPM5的电流。对切除膜片的详细研究表明,TRPM5形成一个非选择性阳离子通道,该通道在8 microM Ca2+作用下被半激活,并在长时间暴露于细胞内Ca2+时脱敏。除了TRPM5基因编码的通道外,我们还发现味觉细胞有一种对细胞内Ca2+不太敏感的第二种类型的Ca2+激活非选择性阳离子通道。这些数据限制了提出的味觉转导模型,并表明味觉细胞中受体信号传导与膜电位之间存在联系。

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