Hotairm1 Controls S100A9 Protein Phosphorylation in Myeloid-Derived Suppressor Cells during Sepsis.

Journal of clinical & cellular immunology Pub Date : 2023-01-01 Epub Date: 2023-08-03
Isatou Bah, Dima Youssef, Zhi Q Yao, Charles E McCall, Mohamed El Gazzar
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Abstract

During the acute phase of sepsis, the S100A9 proinflammatory protein resides in the cytosol in a phosphorylated form. In contrast, S100A9 relocalizes to the nucleus in an unphosphorylated form during the late/chronic sepsis state of immunometabolic paralysis. We reported that Hotairm1, a long noncoding RNA, facilitates S100A9 nuclear location in myeloid-derived suppressor cells. Here, we show that Hotairm1 promotes S100A9 nuclear location by limiting its phosphorylation by p38 MAPK. Knockdown of Hotairm1 in MDSCs from mice and humans with late sepsis increases phospho-S100A9 protein. Conversely, increasing Hotairm1 in early sepsis Gr1+CD11b+ cells by transfection decreases phospho-S100A9 protein levels. Notably, increasing S100A9 protein phosphorylation in late sepsis MDSCs via Hotairm1 knockdown decreases the production of the immunosuppressive cytokine IL-10. These results suggest that targeting Hotairm1 might reduce MDSC expansion during sepsis and thus relieve immunosuppression and improve survival.

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Hotairm1控制脓毒症期间髓源性抑制细胞中S100A9蛋白磷酸化。
在脓毒症的急性期,S100A9促炎蛋白以磷酸化形式存在于细胞质中。相反,S100A9在免疫代谢瘫痪的晚期/慢性败血症状态下以非磷酸化形式重新定位到细胞核。我们报道了Hotairm1,一个长链非编码RNA,在髓源性抑制细胞中促进S100A9核定位。在这里,我们发现Hotairm1通过限制p38 MAPK对S100A9的磷酸化来促进其核定位。在小鼠和晚期脓毒症患者的MDSCs中,敲低Hotairm1可增加磷酸化s100a9蛋白。相反,在早期脓毒症Gr1+CD11b+细胞中,通过转染增加Hotairm1可降低phospho-S100A9蛋白水平。值得注意的是,在脓毒症晚期MDSCs中,通过Hotairm1敲除增加S100A9蛋白磷酸化会降低免疫抑制细胞因子IL-10的产生。这些结果表明,靶向Hotairm1可能会减少脓毒症期间MDSC的扩张,从而缓解免疫抑制并提高生存率。
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Hotairm1 Controls S100A9 Protein Phosphorylation in Myeloid-Derived Suppressor Cells during Sepsis.
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