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SHP-2 phosphatase controls aryl hydrocarbon receptor-mediated ER stress response in mast cells

机译:SHP-2磷酸酶对照肥大细胞中的芳基烃受体介导的ER应激反应

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摘要

Previously we reported that exposure of mouse and human mast cells to aryl hydrocarbon receptor (AhR) ligands resulted in reactive oxygen species (ROS)- and calcium (Ca2+)-dependent activation of mast cells in vitro and in vivo. However, the mechanisms through which the AhR-ligand axis mediates stress response, Ca2+ signaling and subsequent mast cell activation remain to be fully elucidated. Evidence is provided herein that SHP-2 is critical in regulating AhR-mediated ER stress response and intracellular Ca2+ dynamics. We found that an AhR ligand, FICZ, induced significant reduction of intracellular GSH and an increased level of intracellular ROS. Significantly, we showed that in FICZ-treated mast cells, SHP-2 promoted, in a ROS-dependent manner, ER stress response involving primarily the PERK signaling pathway, ATF4 activation and eIF2 alpha phosphorylation, which could be reversed by the addition of an antioxidant, NAC, and was inhibited in cells with SHP-2 knockdown. Our findings suggested that SHP-2 is critical in controlling ER stress signals in response to AhR activation, which provides a new mechanistic insight into how the AhR-ligand axis regulates cellular adaptation to the environmental insult in mast cells.
机译:此前,我们报道,将小鼠和人肥料细胞暴露于芳基烃受体(AHR)配体,得到反应性氧物质(ROS) - 和钙(Ca2 +) - 在体外和体内依赖于肥大细胞的活化。然而,AHR-LigAnd轴介导应力响应的机制,Ca2 +信号传导和随后的肥大细胞活化仍然被完全阐明。本文提供了证据,即SHP-2对于调节AHR介导的ER应激响应和细胞内CA2 +动力学至关重要。我们发现AHR配体,FICZ,诱导细胞内GSH的显着降低和细胞内RO的增加。值得注意的是,我们表明,在FICZ处理的肥大细胞中,SHP-2以ROS依赖性的方式促进ER应激响应主要涉及PERK信号通路,ATF4激活和EIF2α磷酸化,这可以通过添加可以逆转抗氧化剂,NAC,并在具有SHP-2敲低的细胞中抑制。我们的研究结果表明,响应AHR激活,SHP-2对于控制ER应力信号来控制ER应力信号,这提供了一种新的机制深入了解AHR-Ligand轴如何调节对肥大细胞环境损害的细胞适应性。

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