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Notch-mediated patterning and cell fate allocation of pancreatic progenitor cells

机译:Notch介导的胰腺祖细胞的模式和细胞命运分配

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Early pancreatic morphogenesis is characterized by the transformation of an uncommitted pool of pancreatic progenitor cells into a branched pancreatic epithelium that consists of 'tip' and 'trunk' domains. These domains have distinct molecular signatures and differentiate into distinct pancreatic cell lineages. Cells at the branched tips of the epithelium develop into acinar cells, whereas cells in the trunk subcompartment differentiate into endocrine and duct cells. Recent genetic analyses have highlighted the role of key transcriptional regulators in the specification of these subcompartments. Here, we analyzed in mice the role of Notch signaling in the patterning of multipotent pancreatic progenitor cells through mosaic overexpression of a Notch signaling antagonist, dominant-negative mastermind-like 1, resulting in a mixture of wild-type and Notch-suppressed pancreatic progenitor cells. We find that attenuation of Notch signaling has pronounced patterning effects on multipotent pancreatic progenitor cells prior to terminal differentiation. Relative to the wild-type cells, the Notch-suppressed cells lose trunk marker genes and gain expression of tip marker genes. The Notch-suppressed cells subsequently differentiate into acinar cells, whereas duct and endocrine populations are formed predominantly from the wild-type cells. Mechanistically, these observations could be explained by a requirement of Notch for the expression of the trunk determination gene Nkx6.1. This was supported by the finding of direct binding of RBP-jκ to the Nkx6.1 proximal promoter.
机译:早期胰腺形态发生的特征是将未分化的胰腺祖细胞池转化为由“尖端”和“树干”结构域组成的分支胰腺上皮细胞。这些结构域具有独特的分子特征,并分化为独特的胰腺细胞谱系。上皮分支末端的细胞发育成腺泡细胞,而躯干亚室中的细胞则分化为内分泌和导管细胞。最近的遗传分析突出了关键转录调节因子在这些小室的规格中的作用。在这里,我们在小鼠中分析了Notch信号在多能胰腺祖细胞的模式中的作用,该模式通过Notch信号拮抗剂,显性阴性的mastermind-like 1的镶嵌过量表达产生了野生型和Notch抑制的胰腺祖细胞的混合物细胞。我们发现,Notch信号的衰减在末端分化之前对多能胰腺祖细胞具有明显的模式作用。相对于野生型细胞,Notch抑制的细胞失去躯干标记基因并获得末端标记基因的表达。被Notch抑制的细胞随后分化为腺泡细胞,而导管和内分泌群体主要由野生型细胞形成。从机制上讲,这些观察结果可以由Notch对躯干决定基因Nkx6.1表达的要求来解释。 RBP-jκ与Nkx6.1近端启动子直接结合的发现支持了这一点。

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