Division of Vascular Signaling and Cancer, German Cancer Research Center (DKFZ), Heidelberg, Germany.
European Center for Angioscience, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Elife. 2018 Apr 5;7:e32860. doi: 10.7554/eLife.32860.
Angiogenesis is coordinated by VEGF and Notch signaling. DLL4-induced Notch signaling inhibits tip cell formation and vessel branching. To ensure proper Notch signaling, receptors and ligands are clustered at adherens junctions. However, little is known about factors that control Notch activity by influencing the cellular localization of Notch ligands. Here, we show that the multiple PDZ domain protein (MPDZ) enhances Notch signaling activity. MPDZ physically interacts with the intracellular carboxyterminus of DLL1 and DLL4 and enables their interaction with the adherens junction protein Nectin-2. Inactivation of the MPDZ gene leads to impaired Notch signaling activity and increased blood vessel sprouting in cellular models and the embryonic mouse hindbrain. Tumor angiogenesis was enhanced upon endothelial-specific inactivation of MPDZ leading to an excessively branched and poorly functional vessel network resulting in tumor hypoxia. As such, we identified MPDZ as a novel modulator of Notch signaling by controlling ligand recruitment to adherens junctions.
血管生成由 VEGF 和 Notch 信号协调。DLL4 诱导的 Notch 信号抑制尖端细胞的形成和血管分支。为了确保适当的 Notch 信号,受体和配体在黏着连接处以簇状形式存在。然而,对于通过影响 Notch 配体的细胞定位来控制 Notch 活性的因素知之甚少。在这里,我们表明,多 PDZ 域蛋白 (MPDZ) 增强 Notch 信号活性。MPDZ 与 DLL1 和 DLL4 的胞内羧基末端物理相互作用,并使它们与黏着连接蛋白 Nectin-2 相互作用。MPDZ 基因失活导致 Notch 信号活性受损,细胞模型和胚胎小鼠后脑中的血管发芽增加。内皮细胞特异性 MPDZ 失活导致肿瘤血管生成增强,导致分支过多且功能不佳的血管网络,从而导致肿瘤缺氧。因此,我们确定 MPDZ 是 Notch 信号的一种新型调节剂,通过控制配体募集到黏着连接。