Unidad de Terapias Farmacológicas. Área de Genética Humana. Instituto de Investigación de Enfermedades Raras (IIER), Instituto de Salud Carlos III, Madrid, Spain.
Eur J Immunol. 2015 Jan;45(1):273-86. doi: 10.1002/eji.201444806. Epub 2014 Nov 24.
Alternative activation of macrophages plays an important role in a range of physiological and pathological processes. This alternative phenotype, also known as M2 macrophages, is induced by type 2 cytokines such as IL-4. The binding of IL-4 to its receptor leads to activation of two major signaling pathways: STAT-6 and PI3K. However, recent studies have described that p38 MAPK might play a role in IL-4-dependent signaling in some cells, although its role in macrophages is still controversial. In this study, we investigated whether p38 MAPK plays a role in the polarization of macrophages in mice. Our results reveal that IL-4 induces phosphorylation of p38 MAPK in thioglycollate-elicited murine peritoneal macrophages, in addition to STAT-6 and PI3K activation. Furthermore, p38 MAPK inactivation, by gene silencing or pharmacological inhibition, suppressed IL-4-induced typical M2 markers, indicating the involvement of p38 MAPK in the signaling of IL-4 leading to M2-macrophage polarization. Moreover, p38 MAPK inhibition blocked phosphorylation of STAT-6 and Akt, suggesting that p38 MAPK is upstream of these signaling pathways. Finally, we show that in an in vivo model of chitin-induced M2 polarization, p38 MAPK inhibition also diminished activation of M2 markers. Taken together, our data establish a new role for p38 MAPK during IL-4-induced alternative activation of macrophages.
巨噬细胞的替代激活在一系列生理和病理过程中起着重要作用。这种替代表型也称为 M2 巨噬细胞,是由 IL-4 等 2 型细胞因子诱导产生的。IL-4 与其受体结合后,会激活两条主要的信号通路:STAT-6 和 PI3K。然而,最近的研究表明,p38 MAPK 可能在某些细胞中 IL-4 依赖性信号转导中发挥作用,尽管其在巨噬细胞中的作用仍存在争议。在本研究中,我们研究了 p38 MAPK 是否在小鼠巨噬细胞的极化中发挥作用。我们的结果表明,IL-4 除了激活 STAT-6 和 PI3K 外,还会诱导硫代乙醇酸盐诱导的鼠腹膜巨噬细胞中 p38 MAPK 的磷酸化。此外,通过基因沉默或药理学抑制 p38 MAPK 失活,抑制了 IL-4 诱导的典型 M2 标志物,表明 p38 MAPK 参与了 IL-4 诱导的 M2 巨噬细胞极化信号转导。此外,p38 MAPK 抑制阻断了 STAT-6 和 Akt 的磷酸化,表明 p38 MAPK 位于这些信号通路的上游。最后,我们表明在壳聚糖诱导的 M2 极化的体内模型中,p38 MAPK 抑制也减弱了 M2 标志物的激活。综上所述,我们的数据确立了 p38 MAPK 在 IL-4 诱导的巨噬细胞替代激活过程中的新作用。