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首页> 外文期刊>Journal of molecular signaling >Inhibition of PI3K/AKT and MEK/ERK pathways act synergistically to enhance antiangiogenic effects of EGCG through activation of FOXO transcription factor
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Inhibition of PI3K/AKT and MEK/ERK pathways act synergistically to enhance antiangiogenic effects of EGCG through activation of FOXO transcription factor

机译:PI3K / AKT和MEK / ERK途径的抑制作用协同作用,通过激活FOXO转录因子增强EGCG的抗血管生成作用

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BackgroundWe have recently shown that epigallocatechin-3-gallate (EGCG), a polyphenolic compound from green tea, inhibits angiogenesis. However, the molecular mechanisms by which EGCG inhibits angiogenesis have never been investigated. In this study, we examined the interaction of PI3K/AKT and MEK/ERK pathways on the regulation of FOXO transcription factors, which ultimately control the antiangiogenic effects of EGCG.ResultsInhibition of PI3K/AKT and MEK/ERK pathways interact synergistically to inhibit migration and capillary tube formation of HUVEC cells and further enhanced the antiangiogenic effects of EGCG. Inhibition of AKT and MEK kinases synergistically induced FOXO transcriptional activity, which was further enhanced in the presence of EGCG. Phosphorylation deficient mutants of FOXO induced FOXO transcriptional activity, inhibited HUVEC cell migration and capillary tube formation. Inhibition of FOXO phosphorylation also enhanced antiangiogenic effects of EGCG through transcriptional activation of FOXO.ConclusionInhibition of PI3K/AKT and MEK/ERK pathways act synergistically to regulate antiangiogenic effects of EGCG through activation of FOXO transcription factors. The activation of FOXO transcription factors through inhibition of these two pathways may have physiological significance in management of diabetic retinopathy, rheumatoid arthritis, psoriasis, cardiovascular diseases, and cancer.
机译:背景我们最近显示,表没食子儿茶素-3-没食子酸酯(EGCG)是绿茶中的一种多酚化合物,可抑制血管生成。但是,从未研究过EGCG抑制血管生成的分子机制。在这项研究中,我们研究了PI3K / AKT和MEK / ERK途径在FOXO转录因子调控上的相互作用,最终控制了EGCG的抗血管生成作用。结果PI3K / AKT和MEK / ERK途径的抑制作用协同相互作用以抑制迁移和HUVEC细胞的毛细血管形成,进一步增强了EGCG的抗血管生成作用。抑制AKT和MEK激酶可协同诱导FOXO转录活性,在EGCG存在下可进一步增强。 FOXO的磷酸化缺陷突变体诱导FOXO转录活性,抑制HUVEC细胞迁移和毛细管形成。 FOXO磷酸化的抑制作用还通过FOXO的转录激活增强了EGCG的抗血管生成作用。结论PI3K / AKT和MEK / ERK途径的抑制作用通过FOXO转录因子的激活协同调节EGCG的抗血管生成作用。通过抑制这两个途径激活FOXO转录因子在糖尿病性视网膜病,类风湿性关节炎,牛皮癣,心血管疾病和癌症的治疗中可能具有生理学意义。

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