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Induction of IL-4Rα–dependent microRNAs identifies PI3K/Akt signaling as essential for IL-4–driven murine macrophage proliferation in vivo

机译:依赖IL-4Rα的微小RNA的诱导将PI3K / Akt信号转导为体内IL-4驱动的鼠巨噬细胞增殖所必需

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摘要

Macrophage (MΦ) activation must be tightly controlled to preclude overzealous responses that cause self-damage. MicroRNAs promote classical MΦ activation by blocking antiinflammatory signals and transcription factors but also can prevent excessive TLR signaling. In contrast, the microRNA profile associated with alternatively activated MΦ and their role in regulating wound healing or antihelminthic responses has not been described. By using an in vivo model of alternative activation in which adult Brugia malayi nematodes are implanted surgically in the peritoneal cavity of mice, we identified differential expression of miR-125b-5p, miR-146a-5p, miR-199b-5p, and miR-378-3p in helminth-induced MΦ. In vitro experiments demonstrated that miR-378-3p was specifically induced by IL-4 and revealed the IL-4–receptor/PI3K/Akt-signaling pathway as a target. Chemical inhibition of this pathway showed that intact Akt signaling is an important enhancement factor for alternative activation in vitro and in vivo and is essential for IL-4–driven MΦ proliferation in vivo. Thus, identification of miR-378-3p as an IL-4Rα–induced microRNA led to the discovery that Akt regulates the newly discovered mechanism of IL-4–driven macrophage proliferation. Together, the data suggest that negative regulation of Akt signaling via microRNAs might play a central role in limiting MΦ expansion and alternative activation during type 2 inflammatory settings.
机译:必须严格控制巨噬细胞(MΦ)的激活,以防止引起自我伤害的过度热情反应。 MicroRNA通过阻断抗炎信号和转录因子来促进经典的MΦ激活,但也可以防止过多的TLR信号传导。相反,尚未描述与交替激活的MΦ相关的microRNA谱及其在调节伤口愈合或抗蠕虫反应中的作用。通过使用体内选择性激活的体内模型,其中成年马来亚线虫通过外科手术植入小鼠腹膜腔,我们鉴定了miR-125b-5p,miR-146a-5p,miR-199b-5p和miR的差异表达蠕虫诱导的MΦ为-378-3p。体外实验表明,miR-378-3p被IL-4特异性诱导,并以IL-4-受体/ PI3K / Akt信号通路为靶标。该途径的化学抑制作用表明,完整的Akt信号传导是体内和体外交替激活的重要增强因子,并且对于IL-4驱动的MΦ体内增殖至关重要。因此,将miR-378-3p鉴定为IL-4Rα诱导的microRNA导致了Akt调控新发现的IL-4驱动的巨噬细胞增殖机制的发现。总之,数据表明通过microRNA对Akt信号的负调控可能在限制MΦ扩展和2型炎症环境中的替代激活中起核心作用。

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