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Activation of two distinct Sox9-EGFP-expressing intestinal stem cell populations during crypt regeneration after irradiation

机译:在辐照后加工过程中的两个不同SOX9-EGFP表达肠道细胞群的激活

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摘要

Recent identification of intestinal epithelial stem cell (ISC) markers and development of ISC reporter mice permit visualization and isolation of regenerating ISCs after radiation to define their functional and molecular phenotypes. Previous studies in uninjured intestine of Sox9-EGFP reporter mice demonstrate that ISCs express low levels of Sox9-EGFP (Sox9-EGFP Low), whereas enteroendocrine cells (EEC) express high levels of Sox9-EGFP (Sox9-EGFP High). We hypothesized that Sox9-EGFP Low ISCs would expand after radiation, exhibit enhanced proliferative capacities, and adopt a distinct gene expression profile associated with rapid proliferation. Sox9-EGFP mice were given 14 Gy abdominal radiation and studied between days 3 and 9 postradiation. Radiation-induced changes in number, growth, and transcriptome of the different Sox9-EGFP cell populations were determined by histology, flow cytometry, in vitro culture assays, and microarray. Microarray confirmed that nonirradiated Sox9-EGFP Low cells are enriched for Lgr5 mRNA and mRNAs enriched in Lgr5-ISCs and identified additional putative ISC markers. Sox9-EGFP High cells were enriched for EEC markers, as well as Bmil and Hopx, which are putative markers of quiescent ISCs. Irradiation caused complete crypt loss, followed by expansion and hyperproliferation of Sox9-EGFP Low cells. From nonirradiated intestine, only Sox9-EGFP Low cells exhibited ISC characteristics of forming organoids in culture, whereas during regeneration both Sox9-EGFP Low and High cells formed organoids. Microarray demonstrated that regenerating Sox9-EGFP High cells exhibited transcriptomic changes linked to p53-signaling and ISC-like functions including DNA repair and reduced oxidative metabolism. These findings support a model in which Sox9-EGFP Low cells represent active ISCs, Sox9-EGFP High cells contain radiation-activatable cells with ISC characteristics, and both participate in crypt regeneration.
机译:肠上皮干细胞(ISC)标志物和ISC报告小鼠的标志物和发育的最新鉴定允许可视化和分离辐射后再生ISC以定义其功能和分子表型。先前的SOX9-EGFP报告小鼠的未受伤肠的研究表明ISC表达低水平的SOX9-EGFP(SOX9-EGFP低),而进肠内分泌细胞(EEC)表达高水平的SOX9-EGFP(SOX9-EGFP高)。我们假设SOX9-EGFP低ISCs将在辐射后扩展,表现出增强的增殖能力,并采用与快速增殖相关的不同基因表达谱。 SOX9-EGFP小鼠给予14种GY腹部辐射,并在第3天和第9天和第9天进行。通过组织学,流式细胞术,体外培养测定和微阵列测定不同SOX9-EGFP细胞群的数量,生长和转录组的辐射诱导的变化。微阵列证实,非辐射的SOX9-EGFP低细胞用于LGR5 mRNA和富含LGR5-ISC的MRNA,并确定了另外推定的ISC标记物。 SOX9-EGFP高细胞富集EEC标记,以及BMIL和HOPX,其静态ISC的推定标记。辐射引起了完全的隐窝损失,随后通过SOX9-EGFP低细胞的膨胀和过度渗透。从非过辐射的肠道,只有SOX9-EGFP低细胞表现出培养物中的有机体的ISC特征,而在再生期间SOX9-EGFP低和高细胞形成有机体。微阵列证明,再生SOX9-EGFP高细胞表现出与P53信号传导和ISC样功能相关的转录组变化,包括DNA修复和降低的氧化代谢。这些发现支持一种模型,其中SOx9-EGFP低细胞代表活性ISC,SOX9-EGFP高细胞含有具有ISC特性的可辐射活化细胞,并且都参与Crypt再生。

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