Angiogenesis Research Group, Faculty of Health, York University, Rm. 341 Farquharson Building, 4700 Keele St., Toronto, ON, M3J 1P3, Canada.
Angiogenesis. 2013 Oct;16(4):759-72. doi: 10.1007/s10456-013-9353-x. Epub 2013 May 16.
Peripheral artery disease (PAD) is characterized by chronic muscle ischemia. Compensatory angiogenesis is minimal within ischemic muscle despite an increase in angiogenic factors. This may occur due to the prevalence of angiostatic factors. Regulatory mechanisms that could evoke an angiostatic environment during ischemia are largely unknown. Forkhead box O (FoxO) transcription factors, known to repress endothelial cell proliferation in vitro, are potential candidates. Our goal was to determine whether FoxO proteins promote an angiostatic phenotype within ischemic muscle. FoxO1 and the angiostatic matrix protein thrombospondin 1 (THBS1) were elevated in ischemic muscle from PAD patients, or from mice post-femoral artery ligation. Mice with conditional endothelial cell-directed deletion of FoxO proteins (Mx1Cre (+), FoxO1,3,4 (L/L) , referred to as FoxOΔ) were used to assess the role of endothelial FoxO proteins within ischemic tissue. FoxO deletion abrogated the elevation of FoxO1 and THBS1 proteins, enhanced hindlimb blood flow recovery and improved neovascularization in murine ischemic muscle. Endothelial cell outgrowth from 3D explant cultures was more robust in muscles derived from FoxOΔ mice. FoxO1 overexpression induced THBS1 production, and a direct interaction of endogenous FoxO1 with the THBS1 promoter was detectable in primary endothelial cells. We provide evidence that FoxO1 directly regulates THBS1 within ischemic muscle. Altogether, these findings bring novel insight into the regulatory mechanisms underlying the repression of angiogenesis within peripheral ischemic tissues.
外周动脉疾病(PAD)的特征是慢性肌肉缺血。尽管血管生成因子增加,但缺血肌肉中的代偿性血管生成很少。这可能是由于血管生成抑制因子的流行。在缺血过程中引发血管生成抑制环境的调节机制在很大程度上尚不清楚。叉头框 O(FoxO)转录因子,已知在体外抑制内皮细胞增殖,是潜在的候选者。我们的目标是确定 FoxO 蛋白是否在缺血肌肉中促进血管生成抑制表型。PAD 患者或股动脉结扎后小鼠的缺血肌肉中 FoxO1 和血管生成抑制基质蛋白血小板反应蛋白 1(THBS1)升高。使用条件性内皮细胞定向 FoxO 蛋白缺失(Mx1Cre(+),FoxO1,3,4(L/L),称为 FoxOΔ)小鼠来评估内皮 FoxO 蛋白在缺血组织中的作用。FoxO 缺失消除了 FoxO1 和 THBS1 蛋白的升高,增强了小鼠缺血肌肉的后肢血流恢复和新生血管形成。FoxOΔ 小鼠来源的肌肉中 3D 外植体培养的内皮细胞外生更为旺盛。FoxO1 过表达诱导 THBS1 产生,并且在原代内皮细胞中可以检测到内源性 FoxO1 与 THBS1 启动子的直接相互作用。我们提供了证据表明 FoxO1 直接调节缺血肌肉中的 THBS1。总之,这些发现为外周缺血组织中血管生成抑制的调节机制提供了新的见解。