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Regulation of T-cell activation and migration by the kinase TBK1 during neuroinflammation

机译:神经炎症过程中激酶TBK1对T细胞活化和迁移的调节

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Development of an immune or autoimmune response involves T-cell activation in lymphoid organs and subsequent migration to peripheral tissues. Here we show that T-cell-specific ablation of the kinase TBK1 promotes T-cell activation but causes retention of effector T cells in the draining lymph node in a neuroinflammatory autoimmunity model, experimental autoimmune encephalomyelitis (EAE). At older ages, the T-cell-conditional TBK1 -knockout mice also spontaneously accumulate T cells with activated phenotype. TBK1 controls the activation of AKT and its downstream kinase mTORC1 by a mechanism involving TBK1 -stimulated AKT ubiquitination and degradation. The deregulated AKT-mTORC1 signalling in turn contributes to enhanced T-cell activation and impaired effector T-cell egress from draining lymph nodes. Treatment of mice with a small-molecule inhibitor of TBK1 inhibits EAE induction. These results suggest a role for TBK1 in regulating T-cell migration and establish TBK1 as a regulator of the AKT-mTORC1 signalling axis.
机译:免疫或自身免疫反应的发展涉及淋巴器官中的T细胞活化以及随后向周围组织的迁移。在这里,我们显示激酶TBK1的T细胞特异性消融促进T细胞活化,但在神经炎性自身免疫模型(实验性自身免疫性脑脊髓炎(EAE))中,在引流淋巴结中保留效应T细胞。在年龄较大时,以T细胞为条件的TBK1基因敲除小鼠也会自发积聚具有激活表型的T细胞。 TBK1通过涉及TBK1刺激的AKT泛素化和降解的机制来控制AKT及其下游激酶mTORC1的激活。失调的AKT-mTORC1信号转而又有助于增强T细胞活化和受损的T细胞从引流淋巴结流出。用小分子TBK1抑制剂治疗小鼠可抑制EAE诱导。这些结果表明TBK1在调节T细胞迁移中的作用,并将TBK1建立为AKT-mTORC1信号轴的调节剂。

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