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Identification of cyclins A1, E1 and vimentin as downstream targets of heme oxygenase-1 in vascular endothelial growth factor-mediated angiogenesis

机译:细胞周期蛋白A1,E1蛋白和波形蛋白在血管内皮生长因子介导的血管生成血红素加氧酶1的下游靶的鉴定

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Angiogenesis is an essential physiological process and an important factor in disease pathogenesis. However, its exploitation as a clinical target has achieved limited success and novel molecular targets are required. Although heme oxygenase-1 (HO-1) acts downstream of vascular endothelial growth factor (VEGF) to modulate angiogenesis, knowledge of the mechanisms involved remains limited. We set out identify novel HO-1 targets involved in angiogenesis. HO-1 depletion attenuated VEGF-induced human endothelial cell (EC) proliferation and tube formation. The latter response suggested a role for HO-1 in EC migration, and indeed HO-1 siRNA negatively affected directional migration of EC towards VEGF; a phenotype reversed by HO-1 over-expression. EC from Hmox1(-/-) mice behaved similarly. Microarray analysis of HO-1-depleted and control EC exposed to VEGF identified cyclins A1 and E1 as HO-1 targets. Migrating HO-1-deficient EC showed increased p27, reduced cyclin A1 and attenuated cyclin-dependent kinase 2 activity. In vivo, cyclin A1 siRNA inhibited VEGF-driven angiogenesis, a response reversed by Ad-HO-1. Proteomics identified structural protein vimentin as an additional VEGF-HO-1 target. HO-1 depletion inhibited VEGF-induced calpain activity and vimentin cleavage, while vimentin silencing attenuated HO-1-driven proliferation. Thus, vimentin and cyclins A1 and E1 represent VEGF-activated HO-1-dependent targets important for VEGF-driven angiogenesis.
机译:血管生成是一种必要的生理过程和疾病发病机制的重要因素。然而,作为临床目标的剥削已经取得了有限的成功,并且需要新的分子靶标。虽然血红素氧合酶-1(HO-1)起作用血管内皮生长因子(VEGF)的下游以调节血管生成,但涉及的机制仍有限制。我们阐述了识别参与血管生成的新型HO-1目标。 HO-1耗竭减毒VEGF诱导人内皮细胞(EC)增殖和管形成。后一反应表明了HO-1在EC迁移中的作用,并且确实HO-1 siRNA对EC对VEGF的定向迁移产生了负面影响; HO-1过表达逆转的表型。来自HMox1( - / - )小鼠的eC表现得同样。将HO-1耗尽和对照EC暴露于VEGF的微阵列分析,将Cyclins A1和E1鉴定为HO-1靶标。迁移HO-1缺陷Ec显示P27增加,还原细胞周期蛋白A1和减毒的细胞周期蛋白依赖性激酶2活性。在体内,细胞周期蛋白A1 siRNA抑制VEGF驱动的血管生成,通过AD-HO-1反复反应。蛋白质组学将结构蛋白质免花蛋白鉴定为另外的VEGF-HO-1靶标。 HO-1耗竭抑制VEGF诱导的CALPAIN活性和VIMENTIN裂解,而VIMENIN沉默衰减HO-1驱动的增殖。因此,Vimentin和Cyclins A1和E1代表VEGF活化的HO-1依赖性靶标对于VEGF驱动的血管生成。

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