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Natural Functions of PLIN2 Mediating Wnt/LiCl Signaling and Glycogen Synthase Kinase 3 (GSK3)/GSK3 Substrate-Related Effects Are Modulated by Lipid

机译:脂质调节PLIN2介导Wnt / LiCl信号传导和糖原合酶激酶3(GSK3)/ GSK3底物相关作用的自然功能。

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摘要

Belonging to the PLIN family, PLIN2 associates with lipid storage droplets (LSDs), but other functions of PLIN2 remain unclear. Here, we suggest that PLIN2 mediates Wnt signaling because PLIN2 small interfering RNA (siRNA) suppresses activation of Wnt/coreceptor pathways. The mediation in the Wnt/Frizzled pathway seems to occur from Dishevelleds to axin/glycogen synthase kinase 3(GSK3)/β-catenin complexes (AGβC) as Wnt decreases Dishevelled/PLIN2 but increases AGβC/PLIN2 associations. Augmenting cellular LSDs that affect PLIN2 associations with these proteins, oleic acid (OA) treatment inhibits Wnt-increased AGβC/PLIN2 associations and β-catenin T-cell factor signaling (β-CTS). Revealing that PLIN2 is a GSK3-associated protein, the study explored PLIN2-mediated effects on GSK3/GSK3 substrates. PLIN2 siRNA reduces inhibitory GSK3 levels and lithium chloride (LiCl)-upregulated β-catenin or CCAAT/enhancer binding protein α (c/EBPα) expression. OA treatment decreases LiCl-increased c/EBPα via PLIN2-c/EBPα dissociation. In addition to PLIN2 overexpression increasing β-CTS, PLIN2 depletion or overexpression drops or adds expression of GSK3 substrates, such as β-catenin, c/EBPα,c-Myc, cyclin D1, and insulin receptor substrate 1, and cell growth/survival. PLIN2 N or C terminus overexpression that is associated with higher levels of the substrates suggests that those substrates bind to specific regions of PLIN2. Mimicking the possible high lipid concentrations in cells in the human body under conditions of hyperlipidemia/obesity, OA-treated cells gain or reduce GSK3 substrate expression in parallel with a decrease (a Wnt-like effect) or increase in GSK3 activity, likely regulated by GSK3/PLIN2/GSK3 substrate associations.
机译:属于PLIN家族,PLIN2与脂质存储液滴(LSD)关联,但PLIN2的其他功能仍不清楚。在这里,我们建议PLIN2介导Wnt信号,因为PLIN2小干扰RNA(siRNA)会抑制Wnt /共受体途径的激活。随着Wnt降低Dishevelled / PLIN2但增加AGβC/ PLIN2关联,Wnt / Frizzled途径中的介导似乎发生在Dishevelleds到毒素/糖原合酶激酶3(GSK3)/β-catenin复合物(AGβC)中。油酸(OA)处理可增强影响这些蛋白与PLIN2缔合的细胞LSD,从而抑制Wnt增加的AGβC/ PLIN2缔合和β-连环蛋白T细胞因子信号传导(β-CTS)。该研究揭示了PLIN2是与GSK3相关的蛋白,探讨了PLIN2介导的对GSK3 / GSK3底物的作用。 PLIN2 siRNA会降低抑制性GSK3的水平,并降低氯化锂(LiCl)上调的β-连环蛋白或CCAAT /增强子结合蛋白α(c /EBPα)的表达。 OA处理通过PLIN2-c /EBPα的分解降低了LiCl增加的c /EBPα。除了PLIN2过表达会增加β-CTS之外,PLIN2耗竭或过表达也会降低或增加GSK3底物的表达,例如β-catenin,c /EBPα,c-Myc,cyclin D1和胰岛素受体底物1,以及细胞生长/存活。与较高水平的底物相关的PLIN2 N或C末端过度表达表明那些底物与PLIN2的特定区域结合。模仿高脂血症/肥胖症条件下人体细胞中可能的高脂质浓度,OA处理的细胞获得或降低GSK3底物表达,同时降低或降低GSK3活性(可能受Wnt样作用)或增加GSK3 / PLIN2 / GSK3底物关联。

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