Yang Hongbo, Fang Longhou, Zhan Rui, Hegarty Jeffrey M, Ren Jie, Hsiai Tzung K, Gleeson Joseph G, Miller Yury I, Trejo JoAnn, Chi Neil C
Department of Medicine, University of California, San Diego, La Jolla, CA 92093-0613J, USA.
Division of Cardiology, Department of Medicine, School of Medicine, University of California, Los Angeles, CA, USA; Department of Bioengineering, School of Engineering & Applied Science, University of California, Los Angeles, CA, USA.
Dev Biol. 2015 Aug 15;404(2):49-60. doi: 10.1016/j.ydbio.2015.05.011. Epub 2015 May 22.
Angiogenesis relies on specialized endothelial tip cells to extend toward guidance cues in order to direct growing blood vessels. Although many of the signaling pathways that control this directional endothelial sprouting are well known, the specific cellular mechanisms that mediate this process remain to be fully elucidated. Here, we show that Polo-like kinase 2 (PLK2) regulates Rap1 activity to guide endothelial tip cell lamellipodia formation and subsequent angiogenic sprouting. Using a combination of high-resolution in vivo imaging of zebrafish vascular development and a human umbilical vein endothelial cell (HUVEC) in vitro cell culture system, we observed that loss of PLK2 function resulted in a reduction in endothelial cell sprouting and migration, whereas overexpression of PLK2 promoted angiogenesis. Furthermore, we discovered that PLK2 may control angiogenic sprouting by binding to PDZ-GEF to regulate RAP1 activity during endothelial cell lamellipodia formation and extracellular matrix attachment. Consistent with these findings, constitutively active RAP1 could rescue the endothelial cell sprouting defects observed in zebrafish and HUVEC PLK2 knockdowns. Overall, these findings reveal a conserved PLK2-RAP1 pathway that is crucial to regulate endothelial tip cell behavior in order to ensure proper vascular development and patterning in vertebrates.
血管生成依赖于特化的内皮尖端细胞朝着引导信号延伸,以引导血管生长。尽管许多控制这种内皮定向芽生的信号通路已为人所知,但介导这一过程的具体细胞机制仍有待充分阐明。在此,我们表明,Polo样激酶2(PLK2)调节Rap1活性,以引导内皮尖端细胞板状伪足的形成及随后的血管生成芽生。利用斑马鱼血管发育的高分辨率体内成像和人脐静脉内皮细胞(HUVEC)体外细胞培养系统相结合的方法,我们观察到PLK2功能缺失导致内皮细胞芽生和迁移减少,而PLK2的过表达促进血管生成。此外,我们发现PLK2可能通过在内皮细胞板状伪足形成和细胞外基质附着过程中与PDZ-GEF结合来调节RAP1活性,从而控制血管生成芽生。与这些发现一致,组成型激活的RAP1可以挽救在斑马鱼和HUVEC中PLK2敲低时观察到的内皮细胞芽生缺陷。总体而言,这些发现揭示了一条保守的PLK2-RAP1通路,该通路对于调节内皮尖端细胞行为以确保脊椎动物正常的血管发育和模式形成至关重要。