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首页> 外文期刊>Japanese Journal of Pharmacology >Dissecting Receptor-Mediated Ca2+ Influx Pathways: TRP Channels and Their Native Counterparts
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Dissecting Receptor-Mediated Ca2+ Influx Pathways: TRP Channels and Their Native Counterparts

机译:剖析受体介导的Ca2 +流入途径:TRP通道及其天然对等物

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References(62) Cited-By(8) Cellular stimulation from the surrounding extracellular environment via receptors and other pathways evoke activation of Ca2+-permeable cation channels that form essential signaling pathways in controlling biological responses. An important clue to understand the molecular mechanisms underlying these cation channels (tentatively termed as receptor-mediated cation channels (RMCC)) was first provided through molecular studies of the transient receptor potential (trp) protein (TRP), which controls light-induced depolarization in Drosophila photoreceptor cells. Use of the genetic information and recombinant expression technique lead to the discovery of numerous mammalian TRP homologues revealing novel RMCCs. In this review, we focus on the dramatic progress in the molecular investigation of RMCC in mammalian systems. The recent findings should provide powerful tools for the development of novel pharmaceutical targets.
机译:参考文献(62)被引用的By(8)通过受体和其他途径对周围细胞外环境的细胞刺激引起Ca2 +渗透性阳离子通道的激活,该通道形成了控制生物反应的基本信号通路。首先通过对瞬时受体电位(trp)蛋白(TRP)进行分子研究,提供了了解这些阳离子通道(暂时称为受体介导的阳离子通道(RMCC))潜在分子机制的重要线索,该蛋白可控制光诱导的去极化在果蝇感光细胞中。遗传信息和重组表达技术的使用导致发现了许多揭示新RMCC的哺乳动物TRP同源物。在这篇综述中,我们关注于哺乳动物系统中RMCC分子研究的巨大进展。最近的发现应为开发新型药物靶标提供有力的工具。

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