J Clin Invest. 2014 Apr;124(4):1685-98. doi: 10.1172/JCI69780. Epub 2014 Mar 10.
Terminal maturation of invariant NKT (iNKT) cells from stage 2 (CD44+NK1.1-) to stage 3 (CD44+NK1.1+) is accompanied by a functional acquisition of a predominant IFN-γ-producing (iNKT-1) phenotype; however, some cells develop into IL-17-producing iNKT (iNKT-17) cells. iNKT-17 cells are rare and restricted to a CD44+NK1.1- lineage. It is unclear how iNKT terminal maturation is regulated and what factors mediate the predominance of iNKT-1 compared with iNKT-17. The tumor suppressor tuberous sclerosis 1 (TSC1) is an important negative regulator of mTOR signaling, which regulates T cell differentiation, function, and trafficking. Here, we determined that mice lacking TSC1 exhibit a developmental block of iNKT differentiation at stage 2 and skew from a predominantly iNKT-1 population toward a predominantly iNKT-17 population, leading to enhanced airway hypersensitivity. Evaluation of purified iNKT cells revealed that TSC1 promotes T-bet, which regulates iNKT maturation, but downregulates ICOS expression in iNKT cells by inhibiting mTOR complex 1 (mTORC1). Furthermore, mice lacking T-bet exhibited both a terminal maturation defect of iNKT cells and a predominance of iNKT-17 cells, and increased ICOS expression was required for the predominance of iNKT-17 cells in the population of TSC1-deficient iNKT cells. Our data indicate that TSC1-dependent control of mTORC1 is crucial for terminal iNKT maturation and effector lineage decisions, resulting in the predominance of iNKT-1 cells.
固有自然杀伤 T(iNKT)细胞从阶段 2(CD44+NK1.1-)到阶段 3(CD44+NK1.1+)的终末成熟伴随着 IFN-γ产生(iNKT-1)表型的功能获得;然而,一些细胞发育成 IL-17 产生的 iNKT(iNKT-17)细胞。iNKT-17 细胞很少,仅限于 CD44+NK1.1-谱系。iNKT 终末成熟是如何调节的,以及哪些因素介导 iNKT-1 相对于 iNKT-17 的优势尚不清楚。肿瘤抑制因子结节性硬化症 1(TSC1)是 mTOR 信号的重要负调节剂,调节 T 细胞分化、功能和迁移。在这里,我们确定缺乏 TSC1 的小鼠在阶段 2 时 iNKT 分化出现发育阻滞,并从以 iNKT-1 为主的群体向以 iNKT-17 为主的群体倾斜,导致气道超敏反应增强。对纯化的 iNKT 细胞的评估表明,TSC1 促进 T-bet 的表达,这调节 iNKT 的成熟,但通过抑制 mTOR 复合物 1(mTORC1)下调 iNKT 细胞中的 ICOS 表达。此外,缺乏 T-bet 的小鼠既存在 iNKT 细胞的终末成熟缺陷,也存在 iNKT-17 细胞的优势,而在 TSC1 缺陷的 iNKT 细胞群体中,iNKT-17 细胞的优势需要增加 ICOS 表达。我们的数据表明,TSC1 依赖的 mTORC1 控制对于 iNKT 的终末成熟和效应谱系决定至关重要,导致 iNKT-1 细胞的优势。