首页> 外文期刊>Biochemical and Biophysical Research Communications >The Vascular Endothelial Growth Factor-A phosphorylates Murine Double Minute-2 on its Serine 166 via the Extracellular Signal Regulated Kinase 1/2 and p90 Ribosomal S6 Kinase in primary human endothelial cells
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The Vascular Endothelial Growth Factor-A phosphorylates Murine Double Minute-2 on its Serine 166 via the Extracellular Signal Regulated Kinase 1/2 and p90 Ribosomal S6 Kinase in primary human endothelial cells

机译:血管内皮生长因子-A通过原代人内皮细胞中的细胞外信号调节激酶1/2和p90核糖体S6激酶使丝氨酸166上的小鼠Double Minute-2磷酸化。

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Murine Double Minute-2 (Mdm2) has been identified as an essential regulator of skeletal muscle angiogenesis and the pro-angiogenic activity of endothelial cells. We have recently demonstrated that the pro-angiogenic Vascular Endothelial Growth Factor-A (VEGF-A) is a potent upstream regulator of Mdm2 phosphorylation on its Serine 166 (p-Ser166-Mdm2), a protein modification leading to an increase in endothelial cell migration. Here, we investigated the kinase signaling pathways that could be responsible for mediating VEGF-A-dependent Mdm2 phosphorylation. Incubation of primary human dermal microvascular endothelial cells with recombinant VEGF-A for 15 min led to increased phosphorylation levels of VEGF-receptor-2, Mdm2, Akt, Extracellular Signal-Regulated Kinase 1/2 (ERK1/2), and p90 Ribosomal S6 Kinase (p90RSK) proteins. In addition to being linked to VEGF-A signaling, Akt, ERK1/2 and p90RSK have been shown to potentially lead to Mdm2 phosphorylation. We therefore next analyzed which of these kinases could be responsible for VEGF-A-dependent Mdm2 phosphorylation on Serine 166 by using kinase-specific pharmacological inhibitors. Inhibition of ERK1/2 phosphorylation by U0126 entirely abrogated the response of p-Ser166-Mdm2 to VEGF-A treatment, while Akt phosphorylation inhibition by wortmannin led to further elevations in p-Ser166-Mdm2. p90RSK has been identified as a potential candidate downstream of ERK1/2 that could induce Mdm2 Ser166 phosphorylation. Two independent p90RSK inhibitors, FMK and BI-D1870, each led to an entire loss of p-Ser166-Mdm2 responsiveness to VEGF-A. Taken together, our results demonstrate that VEGF-A driven Mdm2 phosphorylation on Ser166 is dependent on the ERK1/2/p90RSK signaling pathway in primary human endothelial cells, furthering our understanding of the complex relationship between Mdm2 and VEGF-A in a physiological context. (C) 2016 Elsevier Inc. All rights reserved.
机译:鼠Double Minute-2(Mdm2)已被确定为骨骼肌血管生成和内皮细胞促血管生成活性的重要调节剂。我们最近证明,促血管生成的血管内皮生长因子-A(VEGF-A)是其丝氨酸166(p-Ser166-Mdm2)上Mdm2磷酸化的有效上游调节剂,其蛋白修饰导致内皮细胞增加移民。在这里,我们调查了可能负责介导VEGF-A依赖的Mdm2磷酸化的激酶信号通路。将人类皮肤微血管内皮细胞与重组VEGF-A孵育15分钟可导致VEGF-受体2,Mdm2,Akt,细胞外信号调节激酶1/2(ERK1 / 2)和p90核糖体S6的磷酸化水平升高激酶(p90RSK)蛋白。除了与VEGF-A信号传导相关外,Akt,ERK1 / 2和p90RSK还显示可能导致Mdm2磷酸化。因此,我们接下来使用激酶特异性药理抑制剂分析了这些激酶中的哪些可能与丝氨酸166上的VEGF-A依赖性Mdm2磷酸化有关。 U0126对ERK1 / 2磷酸化的抑制作用完全消除了p-Ser166-Mdm2对VEGF-A处理的响应,而渥曼青霉素对Akt磷酸化的抑制作用导致p-Ser166-Mdm2进一步升高。已将p90RSK确定为ERK1 / 2下游的潜在候选物,它可能诱导Mdm2 Ser166磷酸化。两种独立的p90RSK抑制剂FMK和BI-D1870各自导致p-Ser166-Mdm2对VEGF-A的反应完全丧失。两者合计,我们的结果表明,Ser166上的VEGF-A驱动的Mdm2磷酸化依赖于人类原代内皮细胞中的ERK1 / 2 / p90RSK信号传导途径,这进一步加深了我们在生理背景下对Mdm2和VEGF-A之间复杂关系的理解。 (C)2016 Elsevier Inc.保留所有权利。

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