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Constitutive expression of NF-κB inducing kinase in regulatory T cells impairs suppressive function and promotes instability and pro-inflammatory cytokine production

机译:调节性T细胞中NF-κB诱导激酶的组成性表达削弱抑制功能并促进不稳定性和促炎性细胞因子的产生

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摘要

CD4+Foxp3+ regulatory T cells (Tregs) are indispensable negative regulators of immune responses. To understand Treg biology in health and disease, it is critical to elucidate factors that affect Treg homeostasis and suppressive function. Tregs express several costimulatory TNF receptor family members that activate non-canonical NF-κB via accumulation of NF-κB inducing kinase (NIK). We previously showed that constitutive NIK expression in all T cells causes fatal multi-organ autoimmunity associated with hyperactive conventional T cell responses and poor Treg-mediated suppression. Here, we show that constitutive NIK expression that is restricted to Tregs via a Cre-inducible transgene causes an autoimmune syndrome. We found that constitutive NIK expression decreased expression of numerous Treg signature genes and microRNAs involved in Treg homeostasis and suppressive phenotype. NIK transgenic Tregs competed poorly with WT Tregs in vivo and produced pro-inflammatory cytokines upon stimulation. Lineage tracing experiments revealed accumulation of ex-Foxp3+ T cells in mice expressing NIK constitutively in Tregs, and these former Tregs produced copious IFNγ and IL-2. Our data indicate that under inflammatory conditions in which NIK is activated, Tregs may lose suppressive function and may actively contribute to inflammation.
机译:CD4 + Foxp3 + 调节性T细胞(Tregs)是免疫反应必不可少的负调节剂。要了解健康和疾病中的Treg生物学,阐明影响Treg稳态和抑制功能的因素至关重要。 Tregs表达了几个共刺激性TNF受体家族成员,这些成员通过积累NF-κB诱导激酶(NIK)激活非典型的NF-κB。我们先前显示,在所有T细胞中本构性NIK表达会导致致命的多器官自身免疫,与常规T细胞反应过度活跃和Treg介导的抑制作用差有关。在这里,我们显示了通过Cre可诱导的转基因限制于Tregs的本构性NIK表达会导致自身免疫综合征。我们发现本构性NIK表达降低了涉及Treg稳态和抑制表型的许多Treg签名基因和microRNA的表达。 NIK转基因Treg在体内与WT Treg竞争较弱,并在刺激后产生促炎性细胞因子。谱系追踪实验表明,前Fregp3 + T细胞在Treg中组成性表达NIK的小鼠体内蓄积,而这些前Treg产生了大量的IFNγ和IL-2。我们的数据表明,在NIK被激活的炎症条件下,Tregs可能会失去抑制功能,并可能积极促进炎症。

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