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首页> 外文期刊>American Journal of Physiology >Fibroblast growth factor receptor-3 regulates Paneth cell lineage allocation and accrual of epithelial stem cells during murine intestinal development.
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Fibroblast growth factor receptor-3 regulates Paneth cell lineage allocation and accrual of epithelial stem cells during murine intestinal development.

机译:成纤维细胞生长因子受体3在鼠肠发育过程中调节Paneth细胞谱系分配和上皮干细胞的积累。

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摘要

Fibroblast growth factor receptor 3 (FGFR-3) is expressed in the lower crypt epithelium, where stem cells of the intestine reside. The role of FGFR-3 signaling in regulating features of intestinal morphogenesis was examined in FGFR-3-null (FGFR-3(-/-)) mice. FGFR-3(-/-) mice had only about half the number of intestinal crypts and a marked decrease in the number of functional clonogenic stem cells, as assessed by an in vivo microcolony-forming assay, compared with wild-type littermates. A marked deficit in allocation of progenitor cells to Paneth cell differentiation was noted, although all the principal epithelial lineages were represented in FGFR-3(-/-) mice. The total cellular content and nuclear localization of beta-catenin protein were reduced in FGFR-3(-/-) mice, as was expression of cyclin D1 and matrix metalloproteinase-7, major downstream targets of beta-catenin/T cell factor-4 (Tcf-4) signaling. Activation of FGFR-3 in Caco-2 cells, an intestinal epithelial cell line, abrogated the fall in beta-catenin/Tcf-4 signaling activity that is normally observed in these cells as cultures become progressively more confluent. These findings are consistent with the hypothesis that, during intestinal development, FGFR-3 signaling regulates crypt epithelial stem cell expansion and crypt morphogenesis, as well as Paneth cell lineage specification, through beta-catenin/Tcf-4-dependent and -independent pathways.
机译:成纤维细胞生长因子受体3(FGFR-3)在下部隐窝上皮中表达,肠道干细胞位于该处。在FGFR-3-null(FGFR-3(-/-))小鼠中检查了FGFR-3信号在调节肠道形态发生特征中的作用。与野生型同窝仔相比,通过体内微菌落形成试验评估,FGFR-3(-/-)小鼠的肠隐窝数目仅约一半,而功能性克隆形成干细胞的数目则明显减少。尽管在FGFR-3(-/-)小鼠中代表了所有主要的上皮细胞系,但仍注意到祖细胞对Paneth细胞分化的分配存在明显的缺陷。 β-catenin蛋白的总细胞含量和核定位在FGFR-3(-/-)小鼠中降低,而cyclin D1和基质金属蛋白酶-7(β-catenin/ T细胞因子-4的主要下游靶标)的表达也降低了(Tcf-4)信令。 Caco-2细胞(一种肠上皮细胞系)中的FGFR-3激活消除了随着培养物逐渐融合而通常在这些细胞中观察到的β-catenin/ Tcf-4信号传导活性的下降。这些发现与以下假设相一致:在肠道发育过程中,FGFR-3信号通过β-catenin/ Tcf-4依赖性和非依赖性途径调节隐窝上皮干细胞的扩张和隐窝形态发生,以及Paneth细胞谱系规范。

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