Department of Medicine, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19130, USA.
Dev Dyn. 2010 Mar;239(3):855-64. doi: 10.1002/dvdy.22220.
The Notch signaling pathway regulates specification of zebrafish liver progenitor cells towards a biliary cell fate. Here, using staged administration of a pharmacological inhibitor of Notch receptor processing, we show that activation of the Notch pathway is also important for growth and expansion of the intrahepatic biliary network in zebrafish larvae. Biliary expansion is accompanied by extensive cell proliferation and active remodeling of the nascent ductal network, as revealed by time lapse imaging of living zebrafish larvae that express a Notch responsive fluorescent reporter transgene. Together, these data support a model in which the Notch signal functions reiteratively during biliary development; first to specific biliary cells and then to direct remodeling of the nascent biliary network. As the Notch pathway plays a comparable role during mammalian biliary development, including humans, these studies also indicate broad conservation of the molecular mechanisms directing biliary development in vertebrates.
Notch 信号通路调节斑马鱼肝祖细胞向胆管细胞命运的特化。在这里,我们使用 Notch 受体加工的药理学抑制剂进行分期给药,表明 Notch 通路的激活对于斑马鱼幼虫肝内胆管网络的生长和扩张也很重要。胆管扩张伴随着广泛的细胞增殖和新生导管网络的活跃重塑,这可以通过活体斑马鱼幼虫的延时成像来揭示,这些幼虫表达 Notch 反应性荧光报告基因转基因。总之,这些数据支持了一个模型,即 Notch 信号在胆管发育过程中反复发挥作用; 首先是特定的胆管细胞,然后是对新生胆管网络的直接重塑。由于 Notch 途径在哺乳动物胆管发育中(包括人类)发挥着类似的作用,这些研究也表明,指导脊椎动物胆管发育的分子机制具有广泛的保守性。