Department of Biochemistry and Biophysics, Programs in Developmental and Stem Cell Biology, Genetics and Human Genetics, Cardiovascular Research Institute, University of California, San Francisco, San Francisco, CA 94158, USA.
Curr Biol. 2012 Oct 9;22(19):1789-94. doi: 10.1016/j.cub.2012.07.037. Epub 2012 Aug 23.
Tissue branching morphogenesis requires the hierarchical organization of sprouting cells into leading "tip" and trailing "stalk" cells [1, 2]. During new blood vessel branching (angiogenesis), endothelial tip cells (TCs) lead sprouting vessels, extend filopodia, and migrate in response to gradients of the secreted ligand, vascular endothelial growth factor (Vegf) [3]. In contrast, adjacent stalk cells (SCs) trail TCs, generate the trunk of new vessels, and critically maintain connectivity with parental vessels. Here, we establish that h2.0-like homeobox-1 (Hlx1) determines SC potential, which is critical for angiogenesis during zebrafish development. By combining a novel pharmacological strategy for the manipulation of angiogenic cell behavior in vivo with transcriptomic analyses of sprouting cells, we identify the uniquely sprouting-associated gene, hlx1. Expression of hlx1 is almost entirely restricted to sprouting endothelial cells and is excluded from adjacent nonangiogenic cells. Furthermore, Hlx1 knockdown reveals its essential role in angiogenesis. Importantly, mosaic analyses uncover a cell-autonomous role for Hlx1 in the maintenance of SC identity in sprouting vessels. Hence, Hlx1-mediated maintenance of SC potential regulates angiogenesis, a finding that may have novel implications for sprouting morphogenesis of other tissues.
组织分支形态发生需要将发芽细胞分层组织成领先的“尖端”和尾随的“茎”细胞[1,2]。在新血管分支(血管生成)期间,内皮尖端细胞(TCs)引导发芽血管,延伸丝状伪足,并响应分泌配体血管内皮生长因子(Vegf)的梯度迁移[3]。相比之下,相邻的茎细胞(SCs)尾随 TCs,生成新血管的主干,并与母体血管保持关键连接。在这里,我们确定 h2.0 样同源盒-1(Hlx1)决定了 SC 潜能,这对于斑马鱼发育过程中的血管生成至关重要。通过结合一种新的药理学策略来操纵体内血管生成细胞的行为,以及对发芽细胞的转录组分析,我们鉴定了独特的与发芽相关的基因 hlx1。hlx1 的表达几乎完全局限于发芽的内皮细胞,而被排除在相邻的非血管生成细胞之外。此外,Hlx1 的敲低揭示了其在血管生成中的重要作用。重要的是,嵌合体分析揭示了 Hlx1 在维持发芽血管中 SC 身份中的细胞自主作用。因此,Hlx1 介导的 SC 潜能维持调节血管生成,这一发现可能对其他组织的发芽形态发生具有新的意义。