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ILC2 分泌的 IL-13 通过环状 RNA circPan3 促进肠道干细胞的自我更新。

IL-13 secreted by ILC2s promotes the self-renewal of intestinal stem cells through circular RNA circPan3.

机构信息

CAS Key Laboratory of Infection and Immunity, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

CAS Key Laboratory of RNA Biology, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Immunol. 2019 Feb;20(2):183-194. doi: 10.1038/s41590-018-0297-6. Epub 2019 Jan 14.

Abstract

Intestinal stem cells (ISCs) are maintained by stemness signaling for precise modulation of self-renewal and differentiation under homeostasis. However, the way in which intestinal immune cells regulate the self-renewal of ISCs remains elusive. Here we found that mouse and human Lgr5 ISCs showed high expression of the immune cell-associated circular RNA circPan3 (originating from the Pan3 gene transcript). Deletion of circPan3 in Lgr5 ISCs impaired their self-renewal capacity and the regeneration of gut epithelium in a manner dependent on immune cells. circPan3 bound mRNA encoding the cytokine IL-13 receptor subunit IL-13Rα1 (Il13ra1) in ISCs to increase its stability, which led to the expression of IL-13Rα1 in ISCs. IL-13 produced by group 2 innate lymphoid cells in the crypt niche engaged IL-13Rα1 on crypt ISCs and activated signaling mediated by IL-13‒IL-13R, which in turn initiated expression of the transcription factor Foxp1. Foxp1 is associated with β-catenin in rendering its nuclear translocation, which caused activation of the β-catenin pathway and the maintenance of Lgr5 ISCs.

摘要

肠干细胞(ISCs)通过干性信号维持其特性,以实现自我更新和分化的精确调控。然而,肠道免疫细胞调节 ISC 自我更新的方式仍不清楚。在这里,我们发现小鼠和人类 Lgr5 ISCs 高表达与免疫细胞相关的环状 RNA circPan3(源自 Pan3 基因转录本)。在 Lgr5 ISCs 中敲除 circPan3 会损害其自我更新能力和肠道上皮的再生,这种损害依赖于免疫细胞。circPan3 结合编码细胞因子 IL-13 受体亚单位 IL-13Rα1(Il13ra1)的 mRNA 以增加其稳定性,从而导致 ISCs 中表达 IL-13Rα1。隐窝龛位中的 2 型固有淋巴细胞产生的 IL-13 与隐窝 ISCs 上的 IL-13Rα1 结合,并激活由 IL-13-IL-13R 介导的信号,进而启动转录因子 Foxp1 的表达。Foxp1 与β-catenin 结合,使其易位到细胞核,导致β-catenin 通路的激活和 Lgr5 ISCs 的维持。

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