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The bHLH transcription factor Ascl1a is essential for the specification of the intestinal secretory cells and mediates Notch signaling in the zebrafish intestine

机译:bHLH转录因子Ascl1a对于规范肠道分泌细胞至关重要,并介导斑马鱼肠道中的Notch信号传导

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Notch signaling has a fundamental role in stem cell maintenance and in cell fate choice in the intestine of different species. Canonically, Notch signaling represses the expression of transcription factors of the achaete-scute like (ASCL) or atonal related protein (ARP) families. Identifying the ARP/ASCL genes expressed in the gastrointestinal tract is essential to build the regulatory cascade controlling the differentiation of gastrointestinal progenitors into the different intestinal cell types. The expression of the ARP/ASCL factors was analyzed in zebrafish to identify, among all the ARP/ASCL factors found in the zebrafish genome, those expressed in the gastrointestinal tract. ascl1a was found to be the earliest factor detected in the intestine. Loss-of-function analyses using the pia/ascl1a mutant, revealed that ascl1a is crucial for the differentiation of all secretory cells. Furthermore, we identify a battery of transcription factors expressed during secretory cell differentiation and downstream of ascl1a. Finally, we show that the repression of secretory cell fate by Notch signaling is mediated by the inhibition of ascl1a expression. In conclusion, this work identifies Ascl1a as a key regulator of the secretory cell lineage in the zebrafish intestine, playing the same role as Atoh1 in the mouse intestine. This highlights the diversity in the ARP/ASCL family members acting as cell fate determinants downstream from Notch signaling.
机译:Notch信号在干细胞维持和不同物种肠道中的细胞命运选择中具有基本作用。典型地,Notch信号传导抑制了achaete-scute样(ASCL)或非音相关蛋白(ARP)家族的转录因子的表达。鉴定在胃肠道中表达的ARP / ASCL基因对于建立控制级联反应来控制胃肠祖细胞向不同肠细胞类型的分化至关重要。分析斑马鱼中ARP / ASCL因子的表达,以鉴定在斑马鱼基因组中发现的所有ARP / ASCL因子中在胃肠道中表达的那些。发现ascl1a是在肠道中检测到的最早因子。使用pia / ascl1a突变体的功能丧失分析显示,ascl1a对所有分泌细胞的分化至关重要。此外,我们确定了分泌细胞分化过程中和ascl1a下游表达的一系列转录因子。最后,我们表明Notch信号抑制分泌细胞命运是由抑制ascl1a表达介导的。总之,这项工作确定了Ascl1a是斑马鱼肠道中分泌细胞谱系的关键调节剂,在小鼠肠道中的作用与Atoh1相同。这突出显示了作为Notch信号下游的细胞命运决定因素的ARP / ASCL家族成员的多样性。

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