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Insights on TRP channels from in vivo studies in Drosophila.

机译:果蝇体内研究对TRP通道的见解。

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Transient receptor potential (TRP) channels mediate responses in a large variety of signaling mechanisms. Most studies on mammalian TRP channels rely on heterologous expression, but their relevance to in vivo tissues is not entirely clear. In contrast, Drosophila TRP and TRP-like (TRPL) channels allow direct analyses of in vivo function. In Drosophila photoreceptors, activation of TRP and TRPL is mediated via the phosphoinositide cascade, with both Ca2+ and diacylglycerol (DAG) essential for generating the light response. In tissue culture cells, TRPL channels are constitutively active, and lipid second messengers greatly facilitate this activity. Inhibition of phospholipase C (PLC) completely blocks lipid activation of TRPL, suggesting that lipid activation is mediated via PLC. In vivo studies in mutant Drosophila also reveal an acute requirement for lipid-producing enzyme, which may regulate PLC activity. Thus, PLC and its downstream second messengers, Ca2+ and DAG, constitute critical mediators of TRP/TRPL gating in vivo.
机译:瞬态受体电位(TRP)通道介导多种信号传导机制中的响应。关于哺乳动物TRP通道的大多数研究都依赖于异源表达,但它们与体内组织的相关性尚不完全清楚。相比之下,果蝇TRP和类TRP(TRPL)通道可以直接分析体内功能。在果蝇感光器中,TRP和TRPL的激活是通过磷酸肌醇级联介导的,其中Ca2 +和二酰基甘油(DAG)都是产生光响应所必需的。在组织培养细胞中,TRPL通道具有组成性活性,脂质第二信使极大地促进了该活性。磷脂酶C(PLC)的抑制作用完全阻断了TRPL的脂质活化,表明脂质活化是通过PLC介导的。在果蝇突变体中的体内研究还显示了对产脂酶的紧急需求,该酶可能调节PLC的活性。因此,PLC及其下游的第二信使Ca2 +和DAG构成了体内TRP / TRPL门控的关键介体。

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