Pikovskaya Olga, Chaix Julie, Rothman Nyanza J, Collins Amélie, Chen Yen-Hua, Scipioni Anna M, Vivier Eric, Reiner Steven L
Department of Microbiology and Immunology, College of Physicians and Surgeons, Columbia University, New York, NY 10032; Department of Pediatrics, College of Physicians and Surgeons, Columbia University, New York, NY 10032;
Centre d'Immunologie de Marseille-Luminy, Aix-Marseille University UM2, INSERM U1104, CNRS UMR7280, Marseille 13288, France; and Service d'Immunologie, Assistance Publique-Hôpitaux de Marseille, Marseille 13385, France.
J Immunol. 2016 Feb 15;196(4):1449-54. doi: 10.4049/jimmunol.1502396. Epub 2016 Jan 20.
Type 1 innate lymphocytes comprise two developmentally divergent lineages, type 1 helper innate lymphoid cells (hILC1s) and conventional NK cells (cNKs). All type 1 innate lymphocytes (ILCs) express the transcription factor T-bet, but cNKs additionally express Eomesodermin (Eomes). We show that deletion of Eomes alleles at the onset of type 1 ILC maturation using NKp46-Cre imposes a substantial block in cNK development. Formation of the entire lymphoid and nonlymphoid type 1 ILC compartment appears to require the semiredundant action of both T-bet and Eomes. To determine if Eomes is sufficient to redirect hILC1 development to a cNK fate, we generated transgenic mice that express Eomes when and where T-bet is expressed using Tbx21 locus control to drive expression of Eomes codons. Ectopic Eomes induces cNK-like properties across the lymphoid and nonlymphoid type 1 ILC compartments. Subsequent to their divergent lineage specification, hILC1s and cNKs thus possess substantial developmental plasticity.
1型天然淋巴细胞由两个发育上不同的谱系组成,即1型辅助性天然淋巴细胞(hILC1s)和传统自然杀伤细胞(cNKs)。所有1型天然淋巴细胞(ILCs)均表达转录因子T-bet,但cNKs还额外表达胚外中胚层决定因子(Eomes)。我们发现,利用NKp46-Cre在1型ILC成熟开始时删除Eomes等位基因,会对cNK的发育造成实质性阻碍。整个淋巴样和非淋巴样1型ILC区室的形成似乎需要T-bet和Eomes的半冗余作用。为了确定Eomes是否足以将hILC1的发育重定向为cNK命运,我们构建了转基因小鼠,这些小鼠在T-bet表达的时间和位置利用Tbx21基因座控制来驱动Eomes密码子的表达从而表达Eomes。异位表达的Eomes在整个淋巴样和非淋巴样1型ILC区室中诱导出cNK样特性。因此,在它们不同的谱系分化之后,hILC1s和cNKs具有显著的发育可塑性。