Loomes Kathleen M, Russo Pierre, Ryan Matthew, Nelson Anthony, Underkoffler Lara, Glover Curtis, Fu Hong, Gridley Thomas, Kaestner Klaus H, Oakey Rebecca J
Division of Gastroenterology, Hepatology and Nutrition, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Hepatology. 2007 Feb;45(2):323-30. doi: 10.1002/hep.21460.
The Notch signaling pathway is involved in determination of cell fate and control of cell proliferation in multiple organ systems. Jag1 encodes a ligand in the Notch pathway and has been identified as the disease-causing gene for the developmental disorder Alagille syndrome. Evidence from the study of human disease and mouse models has implicated Jag1 as having an important role in the development of bile ducts. We have derived a conditional knockout allele (Jag1(loxP)) to study the role of Jag1 and Notch signaling in liver and bile duct development. We crossed Jag1(loxP) mice with a transgenic line carrying Cre recombinase under the control of the albumin promoter and alpha-fetoprotein enhancer to ablate Jag1 in hepatoblasts. The liver-specific Jag1 conditional knockout mice showed normal bile duct development. To further decrease Notch pathway function, we crossed the Jag1 conditional knockout mice with mice carrying the hypomorphic Notch2 allele, and bile duct anatomy remained normal. When Jag1 conditional mice were crossed with mice carrying the Jag1 null allele, the adult progeny exhibited striking bile duct proliferation.
These results indicate that Notch signaling in the liver is sensitive to Jag1 gene dosage and suggest a role for the Notch pathway in postnatal growth and morphogenesis of bile ducts.
Notch信号通路参与多个器官系统中细胞命运的决定和细胞增殖的控制。Jag1编码Notch通路中的一种配体,已被确定为发育障碍阿拉吉耶综合征的致病基因。来自人类疾病和小鼠模型研究的证据表明Jag1在胆管发育中起重要作用。我们构建了一个条件性敲除等位基因(Jag1(loxP)),以研究Jag1和Notch信号在肝脏和胆管发育中的作用。我们将Jag1(loxP)小鼠与在白蛋白启动子和甲胎蛋白增强子控制下携带Cre重组酶的转基因品系杂交,以在肝母细胞中敲除Jag1。肝脏特异性Jag1条件性敲除小鼠的胆管发育正常。为了进一步降低Notch通路功能,我们将Jag1条件性敲除小鼠与携带低表达Notch2等位基因的小鼠杂交,胆管解剖结构仍正常。当Jag1条件性小鼠与携带Jag1无效等位基因的小鼠杂交时,成年后代表现出显著的胆管增殖。
这些结果表明肝脏中的Notch信号对Jag1基因剂量敏感,并提示Notch通路在出生后胆管的生长和形态发生中起作用。