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Notch信号通路通过G蛋白信号调节因子19(RGS19)调控Akt的磷酸化以及脂多糖激活的巨噬细胞的存活。

Notch signaling regulates the phosphorylation of Akt and survival of lipopolysaccharide-activated macrophages via regulator of G protein signaling 19 (RGS19).

作者信息

Sangphech Naunpun, Osborne Barbara A, Palaga Tanapat

机构信息

Graduate Program in Biotechnology, Faculty of Science, Chulalongkorn University, Phayathai Road, Pathumwan, Bangkok 10330, Thailand; Medical Microbiology Interdisciplinary Program, Graduate School, Chulalongkorn University, Phayathai Road, Pathumwan, Bangkok 10330, Thailand.

Department of Veterinary and Animal Sciences, University of Massachusetts at Amherst, Amherst, MA 01003, USA.

出版信息

Immunobiology. 2014 Sep;219(9):653-60. doi: 10.1016/j.imbio.2014.03.020. Epub 2014 Apr 6.

Abstract

Macrophages play critical roles in innate immune defense by sensing microbes using pattern-recognition receptors. Lipopolysaccharide (LPS) stimulates macrophages via TLR, which leads to activation of downstream signaling cascades. In this study, we investigated the roles of a conserved signaling pathway, Notch signaling, in regulating the downstream signaling cascades of the LPS/TLR4 pathways in macrophages. Using a phospho-proteomic approach and a gamma-secretase inhibitor (GSI) to suppress the processing and activation of Notch signaling, we identified regulator of G protein signaling 19 (RGS19) as a target protein whose phosphorylation was affected by GSI treatment. RGS19 is a guanosine triphosphatase (GTPase)-activating protein that functions to negatively regulate G protein-coupled receptors via Gαi/Gαq-linked signaling. Stimulation of RAW264.7 cells with LPS increased the level of the phosphorylated form of RGS19, while LPS stimulation in the presence of GSI decreased its level. GSI treatment did not alter the mRNA level of rgs19. Treatment with GSI or silencing of rgs19 in macrophages impaired the phosphorylation of Akt Thr(308) upon LPS stimulation. Furthermore, targeted deletion of a DNA-binding protein and binding partner of the Notch receptor, RBP-Jκ/CSL, in macrophages resulted in delayed and decreased Akt phosphorylation. Because the PI3K/Akt pathway regulates cell survival in various cell types, the cell cycle and cell death were assayed upon GSI treatment, phosphatidylinositol 3 kinase (PI3K) inhibitor treatment or silencing of rgs19. GSI treatment resulted in decreased cell populations in the G1 and S phases, while it increased the cell population of cell death. Similarly, silencing of rgs19 resulted in a decreased cell population in the G1 phase and an increased cell population in the subG1 phase. Inhibition of Akt phosphorylation by PI3K inhibitor in LPS-stimulated macrophages increased cell population in G1 phase, suggesting a possible cell cycle arrest. Taken together, these results indicate that Notch signaling positively regulates phosphorylation of Akt, possibly via phosphorylation of RGS19, and inhibition of both molecules affects the cell survival and cell cycle of macrophages upon LPS stimulation.

摘要

巨噬细胞通过模式识别受体感知微生物,在天然免疫防御中发挥关键作用。脂多糖(LPS)通过Toll样受体(TLR)刺激巨噬细胞,这会导致下游信号级联反应的激活。在本研究中,我们调查了一条保守的信号通路——Notch信号通路,在调节巨噬细胞中LPS/TLR4通路的下游信号级联反应中的作用。我们使用磷酸化蛋白质组学方法和γ-分泌酶抑制剂(GSI)来抑制Notch信号通路的加工和激活,鉴定出G蛋白信号调节因子19(RGS19)为一种靶蛋白,其磷酸化受到GSI处理的影响。RGS19是一种鸟苷三磷酸酶(GTPase)激活蛋白,通过Gαi/Gαq连接的信号传导负向调节G蛋白偶联受体。用LPS刺激RAW264.7细胞会增加RGS19磷酸化形式的水平,而在GSI存在的情况下进行LPS刺激则会降低其水平。GSI处理不会改变rgs19的mRNA水平。在巨噬细胞中用GSI处理或沉默rgs19会损害LPS刺激后Akt Thr(308)的磷酸化。此外,在巨噬细胞中靶向缺失Notch受体的DNA结合蛋白和结合伴侣RBP-Jκ/CSL会导致Akt磷酸化延迟且降低。由于PI3K/Akt通路调节多种细胞类型中的细胞存活,因此在GSI处理、磷脂酰肌醇3激酶(PI3K)抑制剂处理或沉默rgs19后,对细胞周期和细胞死亡进行了检测。GSI处理导致G1期和S期的细胞群体减少,而细胞死亡的细胞群体增加。同样,沉默rgs19会导致G1期的细胞群体减少,亚G1期的细胞群体增加。在LPS刺激的巨噬细胞中,PI3K抑制剂对Akt磷酸化的抑制增加了G1期的细胞群体,提示可能存在细胞周期停滞。综上所述,这些结果表明Notch信号通路可能通过RGS19的磷酸化正向调节Akt的磷酸化,并且抑制这两种分子会影响LPS刺激后巨噬细胞的细胞存活和细胞周期。

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