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ROR-γt 表达的 iNKT17 细胞的分化是由 Runx1 协调的。

The differentiation of ROR-γt expressing iNKT17 cells is orchestrated by Runx1.

机构信息

Department of Immunology, Mayo Clinic, College of Medicine, 200 1st Street SW, Rochester, MN, 55905, USA.

Department of Microbiology and Immunology, University of Iowa, 51 Newton Rd Iowa City, IA, 52242, USA.

出版信息

Sci Rep. 2017 Aug 1;7(1):7018. doi: 10.1038/s41598-017-07365-8.

Abstract

iNKT cells are a unique lineage of T cells that recognize glycolipid presented by CD1d. In the thymus, they differentiate into iNKT1, iNKT2 and iNKT17 effector subsets, characterized by preferential expression of Tbet, Gata3 and ROR-γt and production of IFN-γ, IL-4 and IL-17, respectively. We demonstrate that the transcriptional regulator Runx1 is essential for the generation of ROR-γt expressing iNKT17 cells. PLZF-cre Runx1 cKO mice lack iNKT17 cells in the thymus, spleen and liver. Runx1-deficient iNKT cells have altered expression of several genes important for iNKT17 differentiation, including decreased expression of IL-7Rα, BATF and c-Maf and increased expression of Bcl11b and Lef1. However, reduction of Lef1 expression or introduction of an IL-7Rα transgene is not sufficient to correct the defect in iNKT17 differentiation, demonstrating that Runx1 is a key regulator of several genes required for iNKT17 differentiation. Loss of Runx1 leads to a severe decrease in iNKT cell numbers in the thymus, spleen and liver. The decrease in cell number is due to a combined decrease in proliferation at Stage 1 during thymic development and increased apoptosis. Thus, we describe a novel role of Runx1 in iNKT cell development and differentiation, particularly in orchestrating iNKT17 differentiation.

摘要

iNKT 细胞是一类独特的 T 细胞,能够识别由 CD1d 呈递的糖脂。在胸腺中,它们分化为 iNKT1、iNKT2 和 iNKT17 效应亚群,其特征是优先表达 Tbet、Gata3 和 ROR-γt,并分别产生 IFN-γ、IL-4 和 IL-17。我们证明转录调节因子 Runx1 对于产生表达 ROR-γt 的 iNKT17 细胞是必需的。PLZF-cre Runx1 cKO 小鼠在胸腺、脾脏和肝脏中缺乏 iNKT17 细胞。Runx1 缺陷的 iNKT 细胞中几个对 iNKT17 分化很重要的基因表达发生改变,包括 IL-7Rα、BATF 和 c-Maf 的表达降低,以及 Bcl11b 和 Lef1 的表达增加。然而,降低 Lef1 的表达或引入 IL-7Rα 转基因并不足以纠正 iNKT17 分化的缺陷,表明 Runx1 是几个对 iNKT17 分化所必需的基因的关键调节因子。Runx1 的缺失导致胸腺、脾脏和肝脏中 iNKT 细胞数量的严重减少。细胞数量的减少是由于在胸腺发育过程中第 1 阶段的增殖减少和凋亡增加的综合作用。因此,我们描述了 Runx1 在 iNKT 细胞发育和分化中的新作用,特别是在协调 iNKT17 分化方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/000a/5539328/fa4e8d2dd7ce/41598_2017_7365_Fig1_HTML.jpg

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