CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A Stk4-Foxp3-NF-κB p65 transcriptional complex promotes T(reg) cell activation and homeostasis.
A Stk4-Foxp3-NF-κB p65 transcriptional complex promotes T(reg) cell activation and homeostasis.
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参与调节性T(T reg)细胞活化和稳态的分子程序仍未被完全理解。在此,我们表明T reg细胞中的T细胞受体(TCR)信号传导诱导丝氨酸/苏氨酸激酶4(Stk4)的核转位,导致形成Stk4-NF-κB p65-Foxp3复合物,该复合物调控Foxp3和p65依赖的转录程序。该复合物通过Stk4依赖的Foxp3丝氨酸-418磷酸化而稳定。T reg细胞中Stk4缺陷,无论是单独缺陷还是与其同源物Stk3联合缺陷,均在小鼠中引发致命的自身免疫性淋巴增殖性疾病,其特征为T reg细胞p65表达和核转位降低、NF-κB p65-Foxp3复合物形成受损以及T reg细胞活化缺陷。在过继免疫治疗模型中,在Stk3/4缺陷的T reg细胞中过表达p65或磷酸模拟型Foxp3 S418E可改善其免疫调节缺陷。
我们的研究确定Stk4是p65-Foxp3依赖转录的必需TCR响应性调节因子,可促进T reg细胞介导的免疫耐受。
The molecular programs involved in regulatory T (T reg ) cell activation and homeostasis remain incompletely understood.
Here, we show that T cell receptor (TCR) signaling in T reg cells induces the nuclear translocation of serine/threonine kinase 4 (Stk4), leading to the formation of an Stk4-NF-κB p65-Foxp3 complex that regulates Foxp3- and p65-dependent transcriptional programs. This complex was stabilized by Stk4-dependent phosphorylation of Foxp3 on serine-418.
Stk4 deficiency in T reg cells, either alone or in combination with its homolog Stk3, precipitated a fatal autoimmune lymphoproliferative disease in mice characterized by decreased T reg cell p65 expression and nuclear translocation, impaired NF-κB p65-Foxp3 complex formation, and defective T reg cell activation. In an adoptive immunotherapy model, overexpression of p65 or the phosphomimetic Foxp3 S418E in Stk3/4-deficient T reg cells ameliorated their immune regulatory defects.
Our studies identify Stk4 as an essential TCR-responsive regulator of p65-Foxp3-dependent transcription that promotes T reg cell-mediated immune tolerance.
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