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首页> 外文期刊>Journal of Cellular Physiology >TRUSS, TNF-R1, and TRPC ion channels synergistically reverse endoplasmic reticulum Ca2+ storage reduction in response to m1 muscarinic acetylcholine receptor signaling.
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TRUSS, TNF-R1, and TRPC ion channels synergistically reverse endoplasmic reticulum Ca2+ storage reduction in response to m1 muscarinic acetylcholine receptor signaling.

机译:桁架、TNF-R1 TRPC离子通道协同反向内质网Ca2 +存储减少应对m1毒蕈碱的乙酰胆碱受体的信号。

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Although most signaling responses initiated by tumor necrosis factor-alpha (TNF-alpha) occur in a Ca(2+)-independent fashion, TNF-alpha receptor signaling augments Ca(2+) entry induced by Galpha(q/11) G-protein coupled receptors (GPCRs) in endothelial cells and increases trans-endothelial permeability. The signaling events involved in GPCR-induced Ca(2+) influx have been characterized and involve store-operated Ca(2+) entry facilitated by the Ca(2+) permeable ion channel, transient receptor potential canonical 4 (TRPC4). Little is known about the mechanisms by which TNF-alpha receptor signaling augments GPCR-induced Ca(2+) entry. TNF-alpha Receptor Ubiquitous Signaling and Scaffolding protein (TRUSS) is a tumor necrosis factor receptor-1 (TNF-R1)-associated protein whose gene name is TRPC4-associated protein (TRPC4AP). The goal of our study was to test the hypothesis that TRUSS serves to link TNF-R1 and GPCR-signaling pathways at the level of TRPC4 by: (i) determining if TRUSS and TNF-R1 interact with TRPC4, and (ii) investigating the role of TRUSS, TNF-R1, and TRPC4 in GPCR-induced Ca(2+) signaling. Here, we show that TRUSS and TNF-R1 interact with a sub-family of TRPC channels (TRPC1, 4, and 5). In addition, we show that TRUSS and TNF-R1 function together with TRPC4 to elevate endoplasmic reticulum Ca(2+) filling in the context of reduced endoplasmic reticulum Ca(2+) storage initiated by G-protein coupled m1 muscarinic acetylcholine receptor (m1AchR) signaling. Together, these findings suggest that TNF-R1, TRUSS, and TRPC4 augment Ca(2+) loading of endoplasmic reticulum Ca(2+) stores in the context of m1AchR stimulation and provide new insights into the mechanisms that connect TNF-R1 to GPCR-induced Ca(2+) signaling.
机译:尽管大多数由信号响应肿瘤坏死因子-α(tnf)发生Ca(2 +)独立时尚,tnf受体信号增强引起Ca(2 +)条目Galpha (q / 11) g蛋白耦合受体(GPCRs)在内皮细胞和增加trans-endothelial渗透率。活动参与GPCR-induced Ca(2 +)涌入特征,包括门店Ca(2 +)条目提供了便利Ca(2 +)透水离子通道,瞬时受体潜在的规范4 (TRPC4)。对tnf受体机制信号增强GPCR-induced Ca(2 +)条目。信号和tnf受体无处不在支架蛋白(桁架)是肿瘤坏死因素receptor-1 (TNF-R1)相关的蛋白质谁的基因叫TRPC4-associated蛋白(TRPC4AP)。假设桁架连接TNF-R1和服务GPCR-signaling通路TRPC4的水平:(我)确定桁架和TNF-R1相互作用TRPC4, (ii)调查桁架的角色,TNF-R1, TRPC4 GPCR-induced Ca (2 +)信号。与sub-family TRPC通道交互(TRPC1、4和5)。此外,我们表明,桁架和TNF-R1功能TRPC4一起提高内质网钙(2 +)填写的背景下,内质网减少Ca(2 +)存储由g蛋白耦合m1毒蕈碱的乙酰胆碱受体(m1AchR)信号。TNF-R1、桁架和TRPC4增加Ca(2 +)加载内质网钙(2 +)的商店中上下文m1AchR刺激和提供新的洞察TNF-R1联系起来的机制GPCR-induced Ca(2 +)信号。

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