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首页> 外文期刊>Developmental biology >Foxi1 inactivation rescues loss of principal cell fate selection in Hes1-deficient kidneys but does not ensure maintenance of principal cell gene expression
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Foxi1 inactivation rescues loss of principal cell fate selection in Hes1-deficient kidneys but does not ensure maintenance of principal cell gene expression

机译:Foxi1失活在HES1缺乏肾脏中拯救了主要细胞命运选择的丧失,但不能确保维持主要细胞基因表达

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The distal nephron and collecting duct segments of the mammalian kidney consist of intercalated cell types intermingled among principal cell types. Notch signaling ensures that a sufficient number of cells select a principal instead of an intercalated cell fate. However, the precise mechanisms by which Notch signaling patterns the distal nephron and collecting duct cell fates is unknown. Here we observed that Hes1, a direct target of Notch signaling pathway, is required within the mouse developing collecting ducts for repression of Foxi1 expression, an essential intercalated cell specific transcription factor. Interestingly, inactivation of Foxi1 in Hes1-deficient collecting ducts rescues the deficiency in principal cell fate selection, overall urine concentrating deficiency, and reduces the occurrence of hydronephrosis. However, Foxi1 inactivation does not rescue the reduction in expression of all principal cell genes in the Hes1-deficient kidney collecting duct cells that select the principal cell fate. Additionally, suppression of Notch/Hes1 signaling in mature principal cells reduces principal cell gene expression without activating Foxi1. We conclude that Hes1 is a Notch signaling target that is essential for normal patterning of the collecting ducts with intermingled cell types by repressing Foxi1, and for maintenance of principal cell gene expression independent of repressing Foxi1.
机译:哺乳动物肾脏的远端肾脏和收集管道区段由主细胞类型中混合的插层细胞类型组成。凹口信令确保足够数量的小区选择主体而不是插入的小区命运。然而,由此缺口缺口和收集管道细胞命名的精确机制是未知的。在这里,我们观察到HES1,NESCH信号通路的直接靶,是在小鼠显影收集管道内,用于抑制FOXI1表达的抑制,必要的插层特异性转录因子。有趣的是,Foxi1在HES1缺乏收集管道中的灭活抵押了主要细胞命运选择,整体尿液浓缩缺乏的缺陷,并减少了肾内肾病的发生。然而,FOXI1失活不能拯救HES1缺乏肾脏收集管道细胞中所有主细胞基因的表达的表达的减少,该导管细胞选择主要细胞命运。另外,在成熟的主要细胞中抑制凹口/ HES1信号传导可在不激活FOXI1的情况下减少主要细胞基因表达。我们得出结论,HES1是一种陷波信号靶标,这对于通过抑制FOXI1的嵌入的细胞类型的集体管道正常地图案化,以及维持与抑制FOXI1无关的主要细胞基因表达。

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