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Store-operated interactions between plasmalemmal STIM1 and TRPC1 proteins stimulate PLCβ1 to induce TRPC1 channel activation in vascular smooth muscle cells

机译:质膜sTIm1和TRpC1蛋白之间存储操作的相互作用刺激pLCβ1诱导血管平滑肌细胞TRpC1通道活化

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摘要

In vascular smooth muscle cells (VSMCs), stimulation of canonical transient receptor potential channel 1 (TRPC1) protein-based store-operated channels (SOCs) mediates Ca2+ entry pathways that regulate contractility, proliferation and migration. It is therefore important to understand how these channels are activated. Studies have shown that stimulation of TRPC1-based SOCs requires G protein α q subunit (Gαq)/phospholipase C (PLC)β1 activities and protein kinase C (PKC) phosphorylation, although it is unclear how store depletion stimulates this gating pathway. The present study examines this issue by focusing on the role of stromal interaction molecule 1 (STIM1), an endo/sarcoplasmic reticulum Ca2+ sensor. Store-operated TRPC1 channel activity was inhibited by TRPC1 and STIM1 antibodies and STIM1 short hairpin RNA (shRNA) in wild-type VSMCs, and was absent in TRPC1−/− VSMCs. Store-operated PKC phosphorylation of TRPC1 was reduced by knockdown of STIM1. Moreover, store-operated PLCβ1 activity measured with the fluorescent phosphatidylinositol 4,5-bisphosphate/inositol 1,4,5-trisphosphate biosensor GFP-PLCδ1-PH was reduced by STIM1 shRNA and absent in TRPC1−/− cells. Immunocytochemistry, co-immunoprecipitation and proximity ligation assays revealed that store depletion activated STIM1 translocation from within the cell to the plasma membrane (PM) where it formed STIM1-TRPC1 complexes, which then associated with Gαq and PLCβ1. Noradrenaline also evoked TRPC1 channel activity and associations between TRPC1, STIM1, Gαq and PLCβ1, which were inhibited by STIM1 knockdown. Effects of N-terminal and C-terminal STIM1 antibodies on TRPC1-based SOCs and STIM1 staining suggest that channel activation may involve insertion of STIM1 into the PM. The findings of the present study identify a new activation mechanism of TRPC1-based SOCs in VSMCs, and a novel role for STIM1, in which store-operated STIM1-TRPC1 interactions stimulate PLCβ1 activity to induce PKC phosphorylation of TRPC1 and channel gating.
机译:在血管平滑肌细胞(VSMC)中,基于蛋白质的典型瞬时受体电位通道1(TRPC1)的存储操作通道(SOC)的刺激介导了调节收缩性,增殖和迁移的Ca2 +进入途径。因此,重要的是要了解如何激活这些通道。研究表明,基于TRPC1的SOCs的刺激需要G蛋白αq亚基(Gαq)/磷脂酶C(PLC)β1活性和蛋白激酶C(PKC)磷酸化,尽管尚不清楚存储耗尽如何刺激该门控途径。本研究通过重点研究基质/内质网Ca2 +传感器间质相互作用分子1(STIM1)的作用来研究此问题。在野生型VSMC中,TRPC1和STIM1抗体以及STIM1短发夹RNA(shRNA)抑制了存储操作的TRPC1通道活性,而在TRPC1-/-VSMC中则没有这种功能。通过敲除STIM1,可降低TRPC1的存储操作性PKC磷酸化程度。此外,利用荧光磷脂酰肌醇4,5-双磷酸/肌醇1,4,5-三磷酸生物传感器GFP-PLCδ1-PH测得的储藏操作型PLCβ1活性被STIM1 shRNA降低,而在TRPC1-/-细胞中不存在。免疫细胞化学,免疫共沉淀和邻近结扎实验表明,储存耗尽激活了STIM1从细胞内转移到质膜(PM),在那里它形成了STIM1-TRPC1复合物,然后与Gαq和PLCβ1相关。去甲肾上腺素还引起了TRPC1通道的活性以及TRPC1,STIM1,Gαq和PLCβ1之间的联系,而STIM1的抑制则抑制了该联系。 N末端和C末端STIM1抗体对基于TRPC1的SOC和STIM1染色的影响表明,通道激活可能涉及将STIM1插入PM中。本研究的发现确定了VSMC中基于TRPC1的SOC的新激活机制,以及STIM1的新作用,其中存储操作的STIM1-TRPC1相互作用刺激PLCβ1活性以诱导TRPC1的PKC磷酸化和通道门控。

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