Heart Center, Freiburg University, Cardiology and Angiology I, 79106 Freiburg, Germany.
J Cell Sci. 2013 Jul 15;126(Pt 14):3082-94. doi: 10.1242/jcs.122333. Epub 2013 May 2.
Growth and regeneration of blood vessels are crucial processes during embryonic development and in adult disease. Members of the bone morphogenetic protein (BMP) family are growth factors known to play a key role in vascular development. The BMP pathway is controlled by extracellular BMP modulators such as BMP endothelial cell precursor derived regulator (BMPER), which we reported previously acts proangiogenically on endothelial cells in a concentration-dependent manner. Here, we explore the function of other BMP modulators, especially Tsg, on endothelial cell behaviour and compare them to BMPER. In Matrigel assays, BMP modulators chordin and noggin had no stimulatory effect; however, gremlin and Tsg enhanced human umbilical vein endothelial cell (HUVEC) sprouting. As the activation dynamics of Tsg were similar to those of BMPER, we further investigated the proangiogenic effect of Tsg on endothelial cells. Tsg enhanced endothelial cell ingrowth in the mouse Matrigel plug assay as well as HUVEC sprouting, migration and proliferation in vitro, dependent on Akt, Erk and Smad signalling pathway activation in a concentration-dependent manner. Surprisingly, silencing of Tsg also increased HUVEC sprouting, migration and proliferation, which is again associated with Akt, Erk and Smad signalling pathway activation. Furthermore, we reveal that Tsg and BMPER interfere with each other to enhance proangiogenic events. However, in vivo the presence of Tsg as well as of BMPER is mandatory for regular development of the zebrafish vasculature. Taken together, our results suggest that BMPER and Tsg maintain a fine-tuned equilibrium that controls BMP pathway activity and is necessary for vascular cell homeostasis.
血管的生长和再生是胚胎发育和成人疾病过程中的关键过程。骨形态发生蛋白(BMP)家族成员是已知在血管发育中起关键作用的生长因子。BMP 途径受细胞外 BMP 调节剂的控制,例如我们之前报道的 BMP 内皮细胞前体细胞衍生调节剂(BMPER),它以浓度依赖的方式对内皮细胞发挥促血管生成作用。在这里,我们探索了其他 BMP 调节剂,特别是 Tsg,对内皮细胞行为的功能,并将其与 BMPER 进行了比较。在 Matrigel 测定中,BMP 调节剂 chordin 和 noggin 没有刺激作用;然而,gremlin 和 Tsg 增强了人脐静脉内皮细胞(HUVEC)的发芽。由于 Tsg 的激活动力学与 BMPER 相似,我们进一步研究了 Tsg 对内皮细胞的促血管生成作用。Tsg 增强了小鼠 Matrigel 塞子测定中的内皮细胞内生长以及 HUVEC 的发芽、迁移和增殖,这依赖于 Akt、Erk 和 Smad 信号通路的激活,呈浓度依赖性。令人惊讶的是,沉默 Tsg 也增加了 HUVEC 的发芽、迁移和增殖,这再次与 Akt、Erk 和 Smad 信号通路的激活有关。此外,我们揭示 Tsg 和 BMPER 相互干扰以增强促血管生成事件。然而,体内 Tsg 的存在以及 BMPER 的存在对于斑马鱼血管系统的正常发育是必需的。总之,我们的结果表明,BMPER 和 Tsg 维持着精细的平衡,控制着 BMP 途径的活性,是血管细胞动态平衡所必需的。