PDGFRα-induced stromal maturation is required to restrain postnatal intestinal epithelial stemness and promote defense mechanisms.

IF 20.4 Cell stem cell Pub Date : 2022-05-05 DOI:10.1016/j.stem.2022.04.005
Jean-Marie Jacob, Selene E Di Carlo, Igor Stzepourginski, Anthony Lepelletier, Papa Diogop Ndiaye, Hugo Varet, Rachel Legendre, Etienne Kornobis, Adam Benabid, Giulia Nigro, Lucie Peduto
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Abstract

After birth, the intestine undergoes major changes to shift from an immature proliferative state to a functional intestinal barrier. By combining inducible lineage tracing and transcriptomics in mouse models, we identify a prodifferentiation PDGFRαHigh intestinal stromal lineage originating from postnatal LTβR+ perivascular stromal progenitors. The genetic blockage of this lineage increased the intestinal stem cell pool while decreasing epithelial and immune maturation at weaning age, leading to reduced postnatal growth and dysregulated repair responses. Ablating PDGFRα in the LTBR stromal lineage demonstrates that PDGFRα has a major impact on the lineage fate and function, inducing a transcriptomic switch from prostemness genes, such as Rspo3 and Grem1, to prodifferentiation factors, including BMPs, retinoic acid, and laminins, and on spatial organization within the crypt-villus and repair responses. Our results show that the PDGFRα-induced transcriptomic switch in intestinal stromal cells is required in the first weeks after birth to coordinate postnatal intestinal maturation and function.

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PDGFRα诱导的基质成熟是抑制出生后肠上皮干燥和促进防御机制所必需的。
出生后,肠道经历了重大变化,从未成熟的增殖状态转变为功能性肠屏障。通过在小鼠模型中结合诱导谱系追踪和转录组学,我们发现了一个起源于出生后LTβR+血管周围基质祖细胞的前分化pdgfr α高肠基质谱系。该谱系的遗传阻断增加了肠干细胞库,同时减少了断奶时上皮细胞和免疫成熟,导致出生后生长减少和修复反应失调。在LTBR基质谱系中去除PDGFRα表明,PDGFRα对谱系的命运和功能有重大影响,诱导从原体基因(如Rspo3和Grem1)到前分化因子(包括bmp、视黄酸和层粘连蛋白)的转录组转换,并影响隐窝绒毛内的空间组织和修复反应。我们的研究结果表明,pdgfr α-诱导的肠基质细胞转录组开关在出生后的最初几周内是必需的,以协调出生后肠道的成熟和功能。
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