Department of Gerontology, Xinhua Hospital affiliated to Shanghai Jiaotong University School of Medicine, Shanghai 200092, China.
Microvasc Res. 2013 Nov;90:48-54. doi: 10.1016/j.mvr.2013.07.009. Epub 2013 Aug 3.
Increased oxidative stress has been suggested to contribute to the functional impairment of endothelial progenitor cells (EPCs). The Forkhead box O transcription factors (FoxOs) are critical regulators involved in various cellular processes including cell apoptosis. Here, we investigated whether FoxOs are required in oxidative stress induced EPC apoptosis.
EPCs were cultured from cord blood derived mononuclear cells and treated with hydrogen peroxide (H2O2) for induction of oxidative stress. Incubation with H2O2 dose dependently reduced viability and increased apoptosis in EPCs. Western blotting showed that EPCs predominantly expressed FoxO3a and the expression was markedly increased upon H2O2 treatment. Transduction with adenoviral vectors expressing either a wide-type or a non-phosphorylatable, constitutively active mutant of FoxO3a led to further increased apoptosis of EPCs after H2O2 treatment. Conversely, FoxO3a silencing rescued EPCs from these H2O2 induced deleterious effects. Overexpression of FoxO3a also increased the level of the pro-apoptotic protein Bim, whereas FoxO3a silencing downregulated H2O2 induced Bim expression. Furthermore, Matrigel assay demonstrated that FoxO3a overexpression significantly impaired the tube forming ability of EPCs, whereas its silencing completely protected EPCs from H2O2 induced decrease of capillary formation.
These data suggest that oxidative stress induced impairment of EPC survival is mediated through a FoxO3a dependant mechanism, possibly by transcriptional regulation of Bim. Our data indicate FoxO3a as a potential therapeutic target for improvement of EPC number and function in patients with ischemic heart disease.
氧化应激增加被认为导致内皮祖细胞(EPC)功能障碍。叉头框 O 转录因子(FoxO)是一种关键的调节因子,参与包括细胞凋亡在内的各种细胞过程。在这里,我们研究了 FoxO 是否需要参与氧化应激诱导的 EPC 凋亡。
从脐血单核细胞培养 EPC,并使用过氧化氢(H2O2)诱导氧化应激。H2O2 孵育剂量依赖性地降低 EPC 的活力并增加其凋亡。Western blot 显示 EPC 主要表达 FoxO3a,并且在 H2O2 处理后表达明显增加。用表达 FoxO3a 的腺病毒载体转导,无论是野生型还是非磷酸化的组成型激活突变体,都会导致 EPC 在 H2O2 处理后进一步增加凋亡。相反,FoxO3a 沉默可挽救 EPC 免受这些 H2O2 诱导的有害影响。FoxO3a 的过表达还增加了促凋亡蛋白 Bim 的水平,而 FoxO3a 沉默则下调了 H2O2 诱导的 Bim 表达。此外,Matrigel 测定表明,FoxO3a 的过表达显著损害了 EPC 的管状形成能力,而其沉默则完全保护 EPC 免受 H2O2 诱导的毛细血管形成减少。
这些数据表明,氧化应激诱导的 EPC 存活受损是通过 FoxO3a 依赖的机制介导的,可能通过 Bim 的转录调节。我们的数据表明 FoxO3a 是改善缺血性心脏病患者 EPC 数量和功能的潜在治疗靶点。