Department of Laboratory Diagnostics, Pomeranian Medical University, Szczecin, Poland.
Am J Pathol. 2011 Feb;178(2):935-44. doi: 10.1016/j.ajpath.2010.10.042.
Chronic limb ischemia, a complication commonly observed in conjunction with cardiovascular disease, is characterized by insufficient neovascularization despite the up-regulation of pro-angiogenic mediators. One hypothesis is that ischemia induces inhibitory signals that circumvent the normal capillary growth response. FoxO transcription factors exert anti-proliferative and pro-apoptotic effects on many cell types. We studied the regulation of FoxO1 protein in ischemic rat skeletal muscle following iliac artery ligation and in cultured endothelial cells. We found that FoxO1 expression was increased in capillaries within ischemic muscles compared with those from rats that underwent a sham operation. This finding correlated with increased expression of p27(Kip1) and reduced expression of Cyclin D1. Phosphorylated Akt was reduced concurrently with the increase in FoxO1 protein. In skeletal muscle endothelial cells, nutrient stress as well as lack of shear stress stabilized FoxO1 protein, whereas shear stress induced FoxO1 degradation. Endogenous FoxO1 co-precipitated with the E3 ubiquitin ligase murine double minute-2 (Mdm2) in endothelial cells, and this interaction varied in direct relation to the extent of Akt and Mdm2 phosphorylation. Moreover, ischemic muscles had a decreased level of Mdm2 phosphorylation and a reduced interaction between Mdm2 and FoxO1. Our results provide novel evidence that the Akt-Mdm2 pathway acts to regulate endothelial cell FoxO1 expression and illustrate a potential mechanism underlying the pathophysiological up-regulation of FoxO1 under ischemic conditions.
慢性肢体缺血是心血管疾病常见的并发症,其特征是尽管促血管生成介质上调,但新生血管形成不足。有一种假设认为,缺血会诱导抑制信号,从而绕过正常的毛细血管生长反应。FoxO 转录因子对许多细胞类型都具有抗增殖和促凋亡作用。我们研究了 FoxO1 蛋白在髂动脉结扎后的缺血大鼠骨骼肌中的调节作用,以及在培养的内皮细胞中的调节作用。我们发现,与接受假手术的大鼠相比,缺血肌肉中的毛细血管中 FoxO1 的表达增加。这一发现与 p27(Kip1)表达增加和 Cyclin D1 表达减少相关。磷酸化 Akt 同时与 FoxO1 蛋白的增加呈负相关。在骨骼肌内皮细胞中,营养应激以及缺乏切应力会稳定 FoxO1 蛋白,而切应力会诱导 FoxO1 降解。内源性 FoxO1 在内皮细胞中与 E3 泛素连接酶鼠双微体-2(Mdm2)共沉淀,这种相互作用与 Akt 和 Mdm2 磷酸化的程度直接相关。此外,缺血肌肉中 Mdm2 磷酸化水平降低,Mdm2 和 FoxO1 之间的相互作用减少。我们的结果提供了新的证据,表明 Akt-Mdm2 途径可调节内皮细胞 FoxO1 的表达,并说明了缺血条件下 FoxO1 病理生理上调的潜在机制。