Department of Microbiology and Immunology, Renaissance School of Medicine, Stony Brook University, Stony Brook, NY, USA.
Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, 11724, USA.
Mucosal Immunol. 2021 Mar;14(2):389-401. doi: 10.1038/s41385-020-00348-5. Epub 2020 Oct 15.
Interleukin-22 (IL-22) signaling in the intestines is critical for promoting tissue-protective functions. However, since a diverse array of cell types (absorptive and secretory epithelium as well as stem cells) express IL-22Ra1, a receptor for IL-22, it has been difficult to determine what cell type(s) specifically respond to IL-22 to mediate intestinal mucosal host defense. Here, we report that IL-22 signaling in the small intestine is positively correlated with Paneth cell differentiation programs. Our Il22Ra1;Lgr5-EGFP-cre-specific knockout mice and, independently, our lineage-tracing findings rule out the involvement of Lgr5 intestinal stem cell (ISC)-dependent IL-22Ra1 signaling in regulating the lineage commitment of epithelial cells, including Paneth cells. Using novel Paneth cell-specific IL-22Ra1 knockout mice (Il22Ra1;Defa6-cre), we show that IL-22 signaling in Paneth cells is required for small intestinal host defense. We show that Paneth cell maturation, antimicrobial effector function, expression of specific WNTs, and organoid morphogenesis are dependent on cell-intrinsic IL-22Ra1 signaling. Furthermore, IL-22 signaling in Paneth cells regulates the intestinal commensal bacteria and microbiota-dependent IL-17A immune responses. Finally, we show ISC and, independently, Paneth cell-specific IL-22Ra1 signaling are critical for providing immunity against Salmonella enterica serovar Typhimurium. Collectively, our findings illustrate a previously unknown role of IL-22 in Paneth cell-mediated small intestinal host defense.
白细胞介素-22 (IL-22) 在肠道中的信号传递对于促进组织保护功能至关重要。然而,由于多种细胞类型(吸收和分泌上皮细胞以及干细胞)表达 IL-22 受体 1(IL-22Ra1),这是 IL-22 的受体,因此很难确定哪种细胞类型(或多种细胞类型)特异性地响应 IL-22 来介导肠道黏膜宿主防御。在这里,我们报告说,小肠中的 IL-22 信号传递与 Paneth 细胞分化程序呈正相关。我们的 Il22Ra1;Lgr5-EGFP-cre 特异性敲除小鼠和独立的谱系追踪发现排除了 Lgr5 肠道干细胞(ISC)依赖性 IL-22Ra1 信号在调节上皮细胞,包括 Paneth 细胞的谱系承诺中的作用。使用新型 Paneth 细胞特异性 IL-22Ra1 敲除小鼠(Il22Ra1;Defa6-cre),我们表明 Paneth 细胞中的 IL-22 信号传递对于小肠宿主防御是必需的。我们表明 Paneth 细胞成熟、抗菌效应功能、特定 WNTs 的表达和类器官形态发生都依赖于细胞内固有 IL-22Ra1 信号传递。此外,Paneth 细胞中的 IL-22 信号传递调节肠道共生细菌和微生物群依赖性的 IL-17A 免疫反应。最后,我们表明 ISC 以及独立的 Paneth 细胞特异性 IL-22Ra1 信号传递对于提供针对沙门氏菌肠炎亚种的免疫力是至关重要的。总之,我们的研究结果说明了 IL-22 在 Paneth 细胞介导的小肠宿主防御中的一个以前未知的作用。