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首页> 外文期刊>Science Signaling >Notch signaling in group 3 innate lymphoid cells modulates their plasticity
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Notch signaling in group 3 innate lymphoid cells modulates their plasticity

机译:3组先天淋巴样细胞中的Notch信号调节其可塑性

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摘要

The Notch signaling pathway is conserved throughout evolution, and it controls various processes, including cell fate determination, differentiation, and proliferation. Innate lymphoid cells (ILCs) are lymphoid cells lacking antigen receptors that fulfill effector and regulatory functions in innate immunity and tissue remodeling. Type 3 ILCs (ILC3s) reinforce the epithelial barrier and maintain homeostasis with intestinal microbiota. We demonstrated that the population of natural cytotoxicity receptor-positive (NCR*) ILC3s in mice is composed of two subsets that have distinct developmental requirements. A major subset depended on the activation of Notch2 in NCR- ILC3 precursors in the lamina propria of the small intestine to stimulate expression ofthe genes encoding the transcription factors T-bet, RORyt, and aryl hydrocarbon receptor (AhR). Notch signaling contributed to the transition of NCR- cells into NCR+ cells, the more proinflammatory subset, in a cell-autonomous manner. In the absence of Notch signaling, this subset of NCR-ILC3s did not acquire the gene expression profile of NCR+ ILC3s. A second subset of NCR+ ILC3s did not depend on Notch for their development or for increased transcription factor abundance; however, their production ofcytokines and cell surface abundance of NCRs were decreased in the absence of Notch signaling. Together, our data suggest that Notch is a regulator of the plasticity of ILC3s by controlling NCR~+ cell fate.
机译:Notch信号通路在整个进化过程中都是保守的,它控制着各种过程,包括细胞命运的确定,分化和增殖。先天性淋巴样细胞(ILC)是缺少抗原受体的淋巴样细胞,这些受体在先天性免疫和组织重塑中起效应子和调节功能。 3型ILC(ILC3)增强了上皮屏障,并与肠道菌群保持了稳态。我们证明了小鼠中天然细胞毒性受体阳性(NCR *)ILC3的种群由两个具有不同发育要求的亚组组成。主要子集取决于小肠固有层中NCR-ILC3前体中Notch2的激活,以刺激编码转录因子T-bet,RORyt和芳基烃受体(AhR)的基因的表达。 Notch信号以细胞自主的方式促进了NCR +细胞向更炎性亚种的NCR +细胞过渡。在没有Notch信号传导的情况下,NCR-ILC3的这个子集没有获得NCR + ILC3的基因表达谱。 NCR + ILC3的第二个子集不依赖于Notch的发育或转录因子丰度的提高;然而,在没有Notch信号传导的情况下,它们的细胞因子产生和NCR的细胞表面丰度降低。总之,我们的数据表明,Notch通过控制NCR〜+细胞命运来调节ILC3的可塑性。

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