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首页> 外文期刊>Nature Communications >Mitochondrial dynamics controls anti-tumour innate immunity by regulating CHIP-IRF1 axis stability
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Mitochondrial dynamics controls anti-tumour innate immunity by regulating CHIP-IRF1 axis stability

机译:线粒体动力学通过调节CHIP-IRF1轴稳定性来控制抗肿瘤先天免疫

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摘要

Macrophages, dendritic cells and other innate immune cells are involved in inflammation and host defense against infection. Metabolic shifts in mitochondrial dynamics may be involved in Toll-like receptor agonist-mediated inflammatory responses and immune cell polarization. However, whether the mitochondrial morphology in myeloid immune cells affects anti-tumor immunity is unclear. Here we show that FAM73b, a mitochondrial outer membrane protein, has a pivotal function in Toll-like receptor-regulated mitochondrial morphology switching from fusion to fission. Switching to mitochondrial fission via ablation of Fam73b (also known as Miga2) promotes IL-12 production. In tumor-associated macrophages, this switch results in T-cell activation and enhances anti-tumor immunity. We also show that the mitochondrial morphology affects Parkin expression and its recruitment to mitochondria. Parkin controls the stability of the downstream CHIP–IRF1 axis through proteolysis. Our findings identify mechanisms associated with mitochondrial dynamics that control anti-tumor immune responses and that are potential targets for cancer immunotherapy.
机译:巨噬细胞,树突状细胞和其他先天免疫细胞参与炎症反应并抵抗感染。线粒体动力学的代谢变化可能与Toll样受体激动剂介导的炎症反应和免疫细胞极化有关。但是,尚不清楚髓样免疫细胞中的线粒体形态是否会影响抗肿瘤免疫力。在这里,我们显示FAM73b,一种线粒体外膜蛋白,在Toll样受体调节的线粒体形态从融合转变为裂变中具有关键作用。通过消融Fam73b(也称为Miga2)切换到线粒体裂变可促进IL-12的产生。在肿瘤相关的巨噬细胞中,这种转换导致T细胞活化并增强抗肿瘤免疫力。我们还表明,线粒体形态影响帕金表达及其对线粒体的募集。 Parkin通过蛋白水解作用控制下游CHIP–IRF1轴的稳定性。我们的发现确定了与线粒体动力学相关的机制,这些机制控制着抗肿瘤免疫反应,并且是癌症免疫疗法的潜在靶标。

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