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小鼠肠道NKp46⁺ 3型固有淋巴细胞的表型和功能可塑性

Phenotypic and Functional Plasticity of Murine Intestinal NKp46+ Group 3 Innate Lymphoid Cells.

作者信息

Verrier Thomas, Satoh-Takayama Naoko, Serafini Nicolas, Marie Solenne, Di Santo James P, Vosshenrich Christian A J

机构信息

Unité d'Immunité Innée, Institut Pasteur, 75724 Paris, France; INSERM U1223, 75724 Paris, France; Paris Diderot University, 75205 Paris, France; and.

Unité d'Immunité Innée, Institut Pasteur, 75724 Paris, France; INSERM U1223, 75724 Paris, France; Laboratory for Intestinal Ecosystem, RIKEN Center for Integrative Medical Science, Yokohama 230-0045, Japan.

出版信息

J Immunol. 2016 Jun 1;196(11):4731-8. doi: 10.4049/jimmunol.1502673. Epub 2016 Apr 22.

Abstract

Group 3 innate lymphoid cells (ILC3) actively participate in mucosal defense and homeostasis through prompt secretion of IL-17A, IL-22, and IFN-γ. Reports identify two ILC3 lineages: a CCR6(+)T-bet(-) subset that appears early in embryonic development and promotes lymphoid organogenesis and a CCR6(-)T-bet(+) subset that emerges after microbial colonization and harbors NKp46(+) ILC3. We demonstrate that NKp46 expression in the ILC3 subset is highly unstable. Cell fate mapping using Ncr1(CreGFP) × Rosa26(RFP) mice revealed the existence of an intestinal RFP(+) ILC3 subset (Ncr1(FM)) lacking NKp46 expression at the transcript and protein levels. Ncr1(FM) ILC3 produced more IL-22 and were distinguishable from NKp46(+) ILC3 by differential CD117, CD49a, DNAX accessory molecule-1, and, surprisingly, CCR6 expression. Ncr1(FM) ILC3 emerged after birth and persisted in adult mice following broad-spectrum antibiotic treatment. These results identify an unexpected phenotypic instability within NKp46(+) ILC3 that suggests a major role for environmental signals in tuning ILC3 functional plasticity.

摘要

第3组固有淋巴细胞(ILC3)通过迅速分泌白细胞介素-17A(IL-17A)、白细胞介素-22(IL-22)和干扰素-γ(IFN-γ)积极参与黏膜防御和内环境稳态。报告确定了两个ILC3谱系:一个CCR6(+)T-bet(-)亚群,在胚胎发育早期出现并促进淋巴器官发生;以及一个CCR6(-)T-bet(+)亚群,在微生物定植后出现,并包含NKp46(+)ILC3。我们证明,ILC3亚群中NKp46的表达高度不稳定。使用Ncr1(CreGFP)×Rosa26(RFP)小鼠进行的细胞命运图谱分析揭示了存在一个肠道RFP(+)ILC3亚群(Ncr1(FM)),在转录本和蛋白质水平上缺乏NKp46表达。Ncr1(FM)ILC3产生更多的IL-22,并且通过差异表达的CD117、CD49a、DNAX辅助分子-1以及令人惊讶的CCR6表达与NKp46(+)ILC3区分开来。Ncr1(FM)ILC3在出生后出现,并在成年小鼠接受广谱抗生素治疗后持续存在。这些结果确定了NKp46(+)ILC3内意想不到的表型不稳定性,表明环境信号在调节ILC3功能可塑性中起主要作用。

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