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首页> 外文期刊>Developmental biology >Mouse atonal homolog 1 directs intestinal progenitors to secretory cell rather than absorptive cell fate.
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Mouse atonal homolog 1 directs intestinal progenitors to secretory cell rather than absorptive cell fate.

机译:小鼠无声同系物1将肠道祖细胞引导至分泌细胞而不是吸收性细胞的命运。

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The Notch-regulated transcription factor mouse atonal homolog 1 (Math1) is required for the development of intestinal secretory cells, as demonstrated by the loss of goblet, endocrine and Paneth cell types in null mice. However, it was unknown whether Math1 is sufficient to induce the program of secretory cell differentiation. To examine the function of Math1 in the differentiation of intestinal epithelial cells, intestinal morphology and epithelial and mesenchymal cell fate were examined by histological staining and marker gene expression in transgenic mice expressing a villin-regulated Math1 transgene. Late prenatal transgenic founders exhibited a gross cellular transformation into a secretory epithelium. The expansion of secretory cells coupled with the almost complete loss of absorptive enterocytes suggested reprogramming of a bipotential progenitor cell. Moreover, Math1 expression inhibited epithelial cell proliferation, as demonstrated by a marked reduction in Ki67 positive cells and blunted villi. Unexpectedly, the transgenic mesenchyme was greatly expanded with increased proliferation. Several mesenchymal cell types were amplified, including smooth muscle and neurons, with maintenance of basic radial patterning. Since transgenic Math1 expression was restricted to the epithelium, these findings suggest that epithelial-mesenchymal signaling is altered by the cellular changes induced by Math1. Thus, Math1 is a key effector directing multipotential precursors to adopt secretory and not absorptive cell fate.
机译:Notch调控的转录因子小鼠无源同源物1(Math1)是肠道分泌细胞发育所必需的,这在空小鼠中杯状细胞,内分泌细胞和Paneth细胞类型的丧失证明了这一点。但是,尚不清楚Math1是否足以诱导分泌性细胞分化程序。为了检查Math1在肠道上皮细胞分化中的功能,通过组织学染色和标记基因表达在表达villin调控Math1的转基因小鼠中检查了肠道形态以及上皮和间充质细胞的命运。晚期产前转基因创始人表现出总体细胞向分泌上皮细胞的转化。分泌细胞的扩增与吸收性肠细胞的几乎完全丧失相结合,提示了双能祖细胞的重新编程。而且,Math1表达抑制了上皮细胞的增殖,Ki67阳性细胞和钝的绒毛显着减少证明了这一点。出乎意料的是,转基因间充质随着增殖的增加而大大扩展。扩增了几种间充质细胞类型,包括平滑肌和神经元,并维持了基本的径向模式。由于转基因Math1的表达仅限于上皮细胞,因此这些发现表明,Math1诱导的细胞变化改变了上皮间质信号传导。因此,Math1是指导多能前体采取分泌型而不是吸收性细胞命运的关键效应器。

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