Department of Biochemistry and Molecular Genetics, College of Medicine, The University of Illinois at Chicago, 900 South Ashland Avenue, Chicago, IL, 60607, USA.
Department of Medicine, Northwestern University, 676 North St. Clair street Arkes Suite 2330, Chicago, IL, 60611, USA.
Nat Commun. 2022 Jun 3;13(1):3117. doi: 10.1038/s41467-022-30851-1.
Intestinal stem cells (ISCs) at the crypt base contribute to intestinal homeostasis through a balance between self-renewal and differentiation. However, the molecular mechanisms regulating this homeostatic balance remain elusive. Here we show that the matricellular protein CCN1/CYR61 coordinately regulates ISC proliferation and differentiation through distinct pathways emanating from CCN1 interaction with integrins αβ/αβ. Mice that delete Ccn1 in Lgr5 + ISCs or express mutant CCN1 unable to bind integrins αβ/αβ exhibited exuberant ISC expansion and enhanced differentiation into secretory cells at the expense of absorptive enterocytes in the small intestine, leading to nutrient malabsorption. Analysis of crypt organoids revealed that through integrins αβ/αβ, CCN1 induces NF-κB-dependent Jag1 expression to regulate Notch activation for differentiation and promotes Src-mediated YAP activation and Dkk1 expression to control Wnt signaling for proliferation. Moreover, CCN1 and YAP amplify the activities of each other in a regulatory loop. These findings establish CCN1 as a niche factor in the intestinal crypts, providing insights into how matrix signaling exerts overarching control of ISC homeostasis.
肠干细胞(ISCs)在隐窝底部通过自我更新和分化之间的平衡来促进肠道稳态。然而,调节这种稳态平衡的分子机制仍不清楚。在这里,我们表明细胞基质蛋白 CCN1/CYR61 通过源自 CCN1 与整合素 αβ/αβ 相互作用的不同途径,协调调节 ISC 的增殖和分化。在 Lgr5+ISCs 中删除 Ccn1 或表达不能与整合素 αβ/αβ 结合的突变型 CCN1 的小鼠表现出旺盛的 ISC 扩增,并增强向分泌细胞分化,而牺牲小肠中的吸收性肠细胞,导致营养吸收不良。对隐窝类器官的分析表明,通过整合素 αβ/αβ,CCN1 诱导 NF-κB 依赖性 Jag1 表达来调节 Notch 激活以进行分化,并促进 Src 介导的 YAP 激活和 Dkk1 表达来控制 Wnt 信号以促进增殖。此外,CCN1 和 YAP 在一个调节环中放大彼此的活性。这些发现确立了 CCN1 作为肠道隐窝中的一种龛位因子,为基质信号如何对 ISC 稳态发挥全面控制提供了深入了解。