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不同水平的 Notch 信号调节胰腺内分泌祖细胞的静止、自我更新和分化。

Different levels of Notch signaling regulate quiescence, renewal and differentiation in pancreatic endocrine progenitors.

机构信息

Department of Biochemistry and Biophysics, Programs in Developmental and Stem Cell Biology, Genetics and Human Genetics, Diabetes Center, and Liver Center, University of California, San Francisco, San Francisco, CA 94158, USA.

出版信息

Development. 2012 May;139(9):1557-67. doi: 10.1242/dev.076000.

Abstract

Genetic studies have implicated Notch signaling in the maintenance of pancreatic progenitors. However, how Notch signaling regulates the quiescent, proliferative or differentiation behaviors of pancreatic progenitors at the single-cell level remains unclear. Here, using single-cell genetic analyses and a new transgenic system that allows dynamic assessment of Notch signaling, we address how discrete levels of Notch signaling regulate the behavior of endocrine progenitors in the zebrafish intrapancreatic duct. We find that these progenitors experience different levels of Notch signaling, which in turn regulate distinct cellular outcomes. High levels of Notch signaling induce quiescence, whereas lower levels promote progenitor amplification. The sustained downregulation of Notch signaling triggers a multistep process that includes cell cycle entry and progenitor amplification prior to endocrine differentiation. Importantly, progenitor amplification and differentiation can be uncoupled by modulating the duration and/or extent of Notch signaling downregulation, indicating that these processes are triggered by distinct levels of Notch signaling. These data show that different levels of Notch signaling drive distinct behaviors in a progenitor population.

摘要

遗传研究表明 Notch 信号在胰腺祖细胞的维持中起作用。然而, Notch 信号如何在单细胞水平上调节胰腺祖细胞的静止、增殖或分化行为尚不清楚。在这里,我们使用单细胞遗传分析和一种新的转基因系统,该系统允许对 Notch 信号进行动态评估,研究 Notch 信号的离散水平如何调节斑马鱼胰内导管中内分泌祖细胞的行为。我们发现这些祖细胞经历不同水平的 Notch 信号,进而调节不同的细胞结果。高水平的 Notch 信号诱导静止,而较低水平的 Notch 信号促进祖细胞扩增。 Notch 信号的持续下调触发了一个多步过程,包括细胞周期进入和内分泌分化前的祖细胞扩增。重要的是,通过调节 Notch 信号下调的持续时间和/或程度,可以将祖细胞扩增和分化分离,表明这些过程是由不同水平的 Notch 信号触发的。这些数据表明,不同水平的 Notch 信号在祖细胞群体中驱动不同的行为。

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