首页> 美国卫生研究院文献>The Journal of Biological Chemistry >TRPC3 Controls Agonist-stimulated Intracellular Ca2+ Release by Mediating the Interaction between Inositol 145-Trisphosphate Receptor and RACK1
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TRPC3 Controls Agonist-stimulated Intracellular Ca2+ Release by Mediating the Interaction between Inositol 145-Trisphosphate Receptor and RACK1

机译:TRPC3控制激动剂刺激的细胞内Ca2 +释放 通过介导肌醇145-三磷酸受体与肌醇之间的相互作用 机架1

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摘要

Activation of TRPC3 channels is concurrent with inositol 1,4,5-trisphosphate (IP3) receptor (IP3R)-mediated intracellular Ca2+ release and associated with phosphatidylinositol 4,5-bisphosphate hydrolysis and recruitment to the plasma membrane. Here we report that interaction of TRPC3 with receptor for activated C-kinase-1 (RACK1) not only determines plasma membrane localization of the channel but also the interaction of IP3R with RACK1 and IP3-dependent intracellular Ca2+ release. We show that TRPC3 interacts with RACK1 via N-terminal residues Glu-232, Asp-233, Glu-240, and Glu-244. Carbachol (CCh) stimulation of HEK293 cells expressing wild type TRPC3 induced recruitment of a ternary TRPC3-RACK1-IP3R complex and increased surface expression of TRPC3 and Ca2+ entry. Mutation of the putative RACK1 binding sequence in TRPC3 disrupted plasma membrane localization of the channel. CCh-stimulated recruitment of TRPC3-RACK1-IP3R complex as well as increased surface expression of TRPC3 and receptor-operated Ca2+ entry were also attenuated. Importantly, CCh-induced intracellular Ca2+ release was significantly reduced as was RACK1-IP3R association without any change in thapsigargin-stimulated Ca2+ release and entry. Knockdown of endogenous TRPC3 also decreased RACK1-IP3R association and decreased CCh-stimulated Ca2+ entry. Furthermore, an oscillatory pattern of CCh-stimulated intracellular Ca2+ release was seen in these cells compared with the more sustained pattern seen in control cells. Similar oscillatory pattern of Ca2+ release was seen after CCh stimulation of cells expressing the TRPC3 mutant. Together these data demonstrate a novel role for TRPC3 in regulation of IP3R function. We suggest TRPC3 controls agonist-stimulated intracellular Ca2+ release by mediating interaction between IP3R and RACK1.
机译:TRPC3通道的激活与肌醇1,4,5-三磷酸(IP3)受体(IP3R)介导的细胞内Ca 2 + 释放同时发生,并与磷脂酰肌醇4,5-双磷酸酯水解并募集到质膜。在这里,我们报道TRPC3与激活C激酶-1(RACK1)受体的相互作用不仅决定了通道的质膜定位,而且还决定了IP3R与RACK1和IP3依赖性细胞内Ca 2 + 释放。我们显示,TRPC3通过N端残基Glu-232,Asp-233,Glu-240和Glu-244与RACK1相互作用。 Carbachol(CCh)刺激表达野生型TRPC3的HEK293细胞诱导三元TRPC3-RACK1-IP3R复合物的募集,并增加TRPC3和Ca 2 + 进入的表面表达。 TRPC3中假定的RACK1结合序列的突变破坏了通道的质膜定位。 CCh刺激的TRPC3-RACK1-IP3R复合物的募集以及TRPC3的表面表达增加和受体操纵的Ca 2 + 进入也被减弱。重要的是,CCh诱导的细胞内Ca 2 + 释放是 RACK1-IP3R关联显着减少,没有任何关联 thapsigargin刺激的Ca 2 + 释放和进入的变化。击倒 内源性TRPC3的表达也降低了RACK1-IP3R的关联, 减少了CCh刺激的Ca 2 + 条目。此外,振荡 CCh刺激的细胞内Ca 2 + 释放的模式 这些细胞与对照细胞中观察到的更持久的模式相比。 CCh后,Ca 2 + 释放的振荡模式相似 刺激表达TRPC3突变体的细胞。这些数据加在一起 演示了TRPC3在IP3R功能调节中的新作用。 我们建议TRPC3控制激动剂刺激的细胞内Ca 2 + 通过中介IP3R和RACK1之间的交互来释放。

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