首页> 美国卫生研究院文献>The EMBO Journal >The transient receptor potential protein (Trp) a putative store-operated Ca2+ channel essential for phosphoinositide-mediated photoreception forms a signaling complex with NorpA InaC and InaD.
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The transient receptor potential protein (Trp) a putative store-operated Ca2+ channel essential for phosphoinositide-mediated photoreception forms a signaling complex with NorpA InaC and InaD.

机译:瞬态受体电位蛋白(Trp)是假定的由存储操纵的Ca2 +通道对磷酸肌醇介导的光接收至关重要它与NorpAInaC和InaD形成信号复合物。

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摘要

The transient receptor potential protein (Trp) is a putative capacitative Ca2+ entry channel present in fly photoreceptors, which use the inositol 1,4,5-trisphosphate (InsP3) signaling pathway for phototransduction. By immunoprecipitation studies, we find that Trp is associated into a multiprotein complex with the norpA-encoded phospholipase C, an eye-specific protein kinase C (InaC) and with the InaD protein (InaD). InaD is a putative substrate of InaC and contains two PDZ repeats, putative protein-protein interaction domains. These proteins are present in the photoreceptor membrane at about equimolar ratios. The Trp homolog analyzed here is isolated together with NorpA, InaC and InaD from blowfly (Calliphora) photoreceptors. Compared to Drosophila Trp, the Calliphora Trp homolog displays 77% amino acid identity. The highest sequence conservation is found in the region that contains the putative transmembrane domains S1-S6 (91% amino acid identity). As investigated by immunogold labeling with specific antibodies directed against Trp and InaD, the Trp signaling complex is located in the microvillar membranes of the photoreceptor cells. The spatial distribution of the signaling complex argues against a direct conformational coupling of Trp to an InsP3 receptor supposed to be present in the membrane of internal photoreceptor Ca2+ stores. It is suggested that the organization of signal transducing proteins into a multiprotein complex provides the structural basis for an efficient and fast activation and regulation of Ca2+ entry through the Trp channel.
机译:瞬时受体电位蛋白(Trp)是存在于果蝇光感受器中的推定的Ca2 +进入通道,其使用肌醇1,4,5-三磷酸(InsP3)信号传导途径进行光转导。通过免疫沉淀研究,我们发现Trp与norpA编码的磷脂酶C,眼特异性蛋白激酶C(InaC)和InaD蛋白(InaD)结合成一种多蛋白复合物。 InaD是InaC的推定底物,包含两个PDZ重复序列,推定的蛋白质-蛋白质相互作用域。这些蛋白质以大约等摩尔的比率存在于感光膜中。此处分析的Trp同源物与从蝇蝇(Calliphora)感光器中分离的NorpA,InaC和InaD一起分离。与果蝇Trp相比,Calliphora Trp同源物显示77%的氨基酸同一性。在包含推定的跨膜结构域S1-S6(91%氨基酸同一性)的区域中发现了最高的序列保守性。如通过针对Trp和InaD的特异性抗体进行免疫金标记研究,Trp信号复合物位于感光细胞的微毛膜中。信号复合物的空间分布反对Trp与InsP3受体的直接构象偶联,该InsP3受体应该存在于内部感光器Ca2 +存储的膜中。提示将信号转导蛋白组织成多蛋白复合物提供了有效和快速激活和调节通过Trp通道进入Ca2 +的结构基础。

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