Wu Yaxu, Moser Martin, Bautch Victoria L, Patterson Cam
Carolina Cardiovascular Biology Center, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
Mol Cell Biol. 2003 Aug;23(16):5680-91. doi: 10.1128/MCB.23.16.5680-5691.2003.
Endothelial cells differentiate from mesoderm-derived precursors to initiate the earliest events in vascular development. Although the signaling events that regulate the successive steps of vascular development are known in some detail, the transcriptional processes that regulate the first steps in vasculogenesis are not well defined. We have studied the regulatory mechanisms of flk1 expression as a model to understand the upstream events in endothelial cell differentiation, since flk1 is the earliest marker of endothelial precursors. Using a variety of biochemical approaches, we identified a cis-acting element in the first intron of the flk1 gene that is required for endothelium-dependent expression in transgenic reporter gene assays. Using the yeast one-hybrid system, we identified HoxB5 as the transcription factor that binds this cis-acting element, the HoxB5-binding element (HBE). HoxB5 mRNA colocalized with flk1 expression in differentiating embryoid bodies, and HoxB5 potently transactivated the flk1 promoter in an HBE-dependent fashion in transient-transfection assays. Overexpression of HoxB5 led to expansion of flk1(+) angioblasts in differentiating embryoid bodies and increased the number of PECAM (platelet-endothelial cell adhesion molecule)-positive primitive blood vessels. HoxB5 is necessary and sufficient to activate the cell-intrinsic events that regulate the differentiation of angioblasts and mature endothelial cells from their mesoderm-derived precursors.
内皮细胞从中胚层来源的前体细胞分化而来,从而启动血管发育的最早事件。尽管调节血管发育连续步骤的信号传导事件已得到一定程度的详细了解,但调节血管生成第一步的转录过程仍未明确界定。我们研究了flk1表达的调控机制,以此作为理解内皮细胞分化上游事件的模型,因为flk1是内皮前体细胞的最早标志物。通过各种生化方法,我们在flk1基因的第一个内含子中鉴定出一个顺式作用元件,该元件在转基因报告基因检测中是内皮依赖性表达所必需的。利用酵母单杂交系统,我们鉴定出HoxB5作为结合此顺式作用元件(即HoxB5结合元件,HBE)的转录因子。在分化的胚状体中,HoxB5 mRNA与flk1表达共定位,并且在瞬时转染实验中,HoxB5以HBE依赖性方式强力反式激活flk1启动子。HoxB5的过表达导致分化的胚状体中flk1(+)成血管细胞扩增,并增加了血小板内皮细胞黏附分子(PECAM)阳性的原始血管数量。HoxB5对于激活调节成血管细胞和成熟内皮细胞从中胚层来源的前体细胞分化的细胞内在事件是必要且充分的。