Trindade Alexandre, Kumar S Ram, Scehnet Jeffrey S, Lopes-da-Costa Luis, Becker Jorg, Jiang Weidong, Liu Ren, Gill Parkash S, Duarte Antonio
Centro de Informatica do Instituto Superior de Agronomia (CIISA), Lisbon Technical University, Lisbon, Portugal.
Blood. 2008 Sep 1;112(5):1720-9. doi: 10.1182/blood-2007-09-112748. Epub 2008 Jun 17.
The importance of Notch signaling pathway in the regulation of vascular development and angiogenesis is suggested by the expression of Notch receptors and ligands in vascular endothelial cells (ECs) and the observed vascular phenotypes in mutants of Notch receptors or ligands, especially Dll4. DLL4 is specifically expressed in arterial ECs during development, and haplo-insufficiency is embryonically lethal in mice. To address the role of Dll4 in vascular development, we produced mDll4 conditionally overexpressed transgenic mice that were crossed with constitutive recombinase cre lines. Double transgenic embryos displayed grossly enlarged dorsal aortae (DA) and died before embryonic day 10.5 (E10.5), showing a variable degree of premature arteriovenous fusion. Veins displayed ectopic expression of arterial markers. Other defects included reduced vascular sprouting, EC proliferation, and migration. mDll4 overexpression also inhibited VEGF signaling and increased fibronectin accumulation around the vessels. In vitro and in vivo studies of DLL4-FL (Dll4-full-length) in ECs recapitulate many of the mDll4 transgenics findings, including decreased tube formation, reduced vascular branching, fewer vessels, increased pericyte recruitment, and increased fibronectin expression. These results establish the role of Dll4 in arterial identity determination, and regulation of angiogenesis subject to dose and location.
Notch信号通路在血管发育和血管生成调节中的重要性,可由Notch受体和配体在血管内皮细胞(ECs)中的表达以及在Notch受体或配体突变体(尤其是Dll4)中观察到的血管表型所表明。DLL4在发育过程中特异性表达于动脉ECs,单倍体不足在小鼠胚胎期是致死的。为了研究Dll4在血管发育中的作用,我们构建了条件性过表达mDll4的转基因小鼠,并将其与组成型重组酶cre品系杂交。双转基因胚胎显示背主动脉(DA)明显增大,并在胚胎第10.5天(E10.5)之前死亡,表现出不同程度的动静脉过早融合。静脉显示出动脉标志物的异位表达。其他缺陷包括血管芽生减少、EC增殖和迁移减少。mDll4过表达还抑制VEGF信号传导,并增加血管周围纤连蛋白的积累。对ECs中DLL4-FL(Dll4全长)的体外和体内研究重现了许多mDll4转基因研究结果,包括管形成减少。血管分支减少、血管数量减少、周细胞募集增加和纤连蛋白表达增加。这些结果确定了Dll4在动脉身份确定以及血管生成的剂量和位置依赖性调节中的作用。