Tchorz Jan S, Kinter Jochen, Müller Matthias, Tornillo Luigi, Heim Markus H, Bettler Bernhard
Department of Biomedicine, Institute of Physiology, University of Basel, Switzerland.
Hepatology. 2009 Sep;50(3):871-9. doi: 10.1002/hep.23048.
Intrahepatic bile duct (IHBD) development begins with the differentiation of hepatoblasts into a single continuous biliary epithelial cell (BEC) layer, called the ductal plate. During ductal plate remodeling, tubular structures arise at distinct sites of the ductal plate, forming bile ducts that dilate into the biliary tree. Alagille syndrome patients, who suffer from bile duct paucity, carry Jagged1 and Notch2 mutations, indicating that Notch2 signaling is important for IHBD development. To clarify the role of Notch2 in BEC differentiation, tubulogenesis, and BEC survival, we developed a mouse model for conditional expression of activated Notch2 in the liver. We show that expression of the intracellular domain of Notch2 (Notch2ICD) differentiates hepatoblasts into BECs, which form additional bile ducts in periportal regions and ectopic ducts in lobular regions. Additional ducts in periportal regions are maintained into adulthood and connect to the biliary tight junction network, resulting in an increased number of bile ducts per portal tract. Remarkably, Notch2ICD-expressing ductal plate remnants were not eliminated during postnatal development, implicating Notch2 signaling in BEC survival. Ectopic ducts in lobular regions did not persist into adulthood, indicating that local signals in the portal environment are important for maintaining bile ducts.
Notch2 signaling regulates BEC differentiation, the induction of tubulogenesis during IHBD development, and BEC survival.
肝内胆管(IHBD)发育始于肝母细胞分化为单一连续的胆管上皮细胞(BEC)层,即导管板。在导管板重塑过程中,导管板的不同部位会出现管状结构,形成胆管,这些胆管会扩张形成胆管树。患有胆管稀少症的阿拉吉列综合征患者携带Jagged1和Notch2突变,这表明Notch2信号通路对IHBD发育很重要。为了阐明Notch2在BEC分化、小管形成和BEC存活中的作用,我们构建了一个在肝脏中条件性表达激活型Notch2的小鼠模型。我们发现,Notch2细胞内结构域(Notch2ICD)的表达可使肝母细胞分化为BEC,这些BEC在门静脉周围区域形成额外的胆管,在小叶区域形成异位胆管。门静脉周围区域的额外胆管会维持到成年期,并连接到胆小管紧密连接网络,导致每个门静脉周围区域的胆管数量增加。值得注意的是,表达Notch2ICD的导管板残余物在出生后发育过程中并未被清除,这表明Notch2信号通路与BEC存活有关。小叶区域的异位胆管在成年后并未持续存在,这表明门静脉环境中的局部信号对维持胆管很重要。
Notch2信号通路调节BEC分化、IHBD发育过程中小管形成的诱导以及BEC存活。