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首页> 外文期刊>The journal of clinical investigation >Myeloid cell expression of the RNA-binding protein HuR protects mice from pathologic inflammation and colorectal carcinogenesis
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Myeloid cell expression of the RNA-binding protein HuR protects mice from pathologic inflammation and colorectal carcinogenesis

机译:RNA结合蛋白HuR的髓样细胞表达可保护小鼠免受病理性炎症和结直肠癌变的影响

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The innate immune response involves a variety of inflammatory reactions that can result in inflammatory disease and cancer if they are not resolved and instead are allowed to persist. The effective activation and resolution of innate immune responses relies on the production and posttranscriptional regulation of mRNAs encoding inflammatory effector proteins. The RNA-binding protein HuR binds to and regulates such mRNAs, but its exact role in inflammation remains unclear. Here we show that HuR maintains inflammatory homeostasis by controlling macrophage plasticity and migration. Mice lacking HuR in myeloid-lineage cells, which include many of the cells of the innate immune system, displayed enhanced sensitivity to endotoxemia, rapid progression of chemical-induced colitis, and severe susceptibility to colitis-associated cancer. The myeloid cell–specific HuR-deficient mice had an exacerbated inflammatory cytokine profile and showed enhanced CCR2-mediated macrophage chemotaxis. At the molecular level, activated macrophages from these mice showed enhancements in the use of inflammatory mRNAs (including Tnf , Tgfb , Il10 , Ccr2 , and Ccl2 ) due to a lack of inhibitory effects on their inducible translation and/or stability. Conversely, myeloid overexpression of HuR induced posttranscriptional silencing, reduced inflammatory profiles, and protected mice from colitis and cancer. Our results highlight the role of HuR as a homeostatic coordinator of mRNAs that encode molecules that guide innate inflammatory effects and demonstrate the potential of harnessing the effects of HuR for clinical benefit against pathologic inflammation and cancer.
机译:先天性免疫反应涉及多种炎症反应,如果不解决而让其持续存在,可能导致炎症性疾病和癌症。先天性免疫应答的有效激活和消除取决于编码炎症效应蛋白的mRNA的产生和转录后调控。 RNA结合蛋白HuR结合并调节此类mRNA,但其在炎症中的确切作用仍不清楚。在这里,我们显示了HuR通过控制巨噬细胞的可塑性和迁移来维持炎症稳态。髓系谱系细胞(包括许多先天免疫系统细胞)缺乏HuR的小鼠对内毒素血症的敏感性增强,化学诱导的结肠炎进展迅速,对结肠炎相关癌症的敏感性极高。骨髓细胞特异的HuR缺陷小鼠的炎症细胞因子特征加剧,并显示出CCR2介导的巨噬细胞趋化性增强。在分子水平上,由于缺乏对它们的诱导型翻译和/或稳定性的抑制作用,来自这些小鼠的活化的巨噬细胞显示出炎性mRNA(包括Tnf,Tgfb,Il10,Ccr2和Ccl2)的使用增强。相反,HuR的髓样过表达诱导转录后沉默,减少炎症,并保护小鼠免受结肠炎和癌症的侵害。我们的研究结果突显了HuR作为mRNA的稳态调节剂的作用,该mRNA编码可指导先天性炎症作用的分子,并证明了利用HuR的作用获得针对病理性炎症和癌症的临床益处的潜力。

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