首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Depletion of intracellular Ca2+ stores stimulates the translocation of vanilloid transient receptor potential 4-c1 heteromeric channels to the plasma membrane.
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Depletion of intracellular Ca2+ stores stimulates the translocation of vanilloid transient receptor potential 4-c1 heteromeric channels to the plasma membrane.

机译:细胞内Ca2 +储存的枯竭刺激了类香草醇瞬态受体电位4-c1异聚体通道向质膜的转运。

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OBJECTIVE: To examine the effect of Ca(2+) store depletion on the translocation of vanilloid transient receptor potential (TRPV) 4-C1 heteromeric channels to the plasma membrane. METHODS AND RESULTS: Vesicular trafficking is a key mechanism for controlling the surface expression of TRP channels in the plasma membrane, where they perform their function. TRP channels in vivo are often composed of heteromeric subunits. Experiments using total internal fluorescence reflection microscopy and biotin surface labeling show that Ca(2+) store depletion enhanced TRPV4-C1 translocation into the plasma membrane in human embryonic kidney 293 cells that were coexpressed with TRPV4 and canonical transient receptor potential 1 (TRPC1). Fluorescent Ca(2+) measurement and patch clamp studies demonstrated that Ca(2+) store depletion enhanced 4alpha-PDD-stimulated Ca(2+) influx and cation current. The translocation required stromal interacting molecule 1 (STIM1). TRPV4-C1 heteromeric channels were more favorably translocated to the plasma membrane than TRPC1 or TRPV4 homomeric channels. Similar results were obtained in native vascular endothelial cells. CONCLUSIONS: Ca(2+) store depletion stimulates the insertion of TRPV4-C1 heteromeric channels into the plasma membrane, resulting in an augmented Ca(2+) influx in response to flow in the human embryonic kidney cell overexpression system and native endothelial cells.
机译:目的:研究Ca(2+)存储耗竭对类固醇瞬态受体电位(TRPV)4-C1异聚体通道向质膜转运的影响。方法和结果:囊泡运输是控制TRP通道在质膜中发挥其功能的表面表达的关键机制。体内的TRP通道通常由异聚亚基组成。使用总内部荧光反射显微镜和生物素表面标记的实验表明,Ca(2+)将耗尽的TRPV4-C1转运增强到人胚肾293细胞中与TRPV4和规范瞬时受体电位1(TRPC1)共表达的质膜中。荧光Ca(2+)测量和膜片钳研究表明,Ca(2+)存储耗竭增强4alpha-PDD刺激的Ca(2+)涌入和阳离子电流。易位需要基质相互作用分子1(STIM1)。与TRPC1或TRPV4同源通道相比,TRPV4-C1异构通道更易转移至质膜。在天然血管内皮细胞中获得了相似的结果。结论:Ca(2+)存储耗尽刺激TRPV4-C1异质通道插入质膜,从而导致Ca(2+)流入量增加,以响应人类胚胎肾细胞过表达系统和天然内皮细胞中的血流。

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