首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Radiation-induced HIF-1alpha cell survival pathway is inhibited by soy isoflavones in prostate cancer cells.
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Radiation-induced HIF-1alpha cell survival pathway is inhibited by soy isoflavones in prostate cancer cells.

机译:大豆异黄酮在前列腺癌细胞中抑制辐射诱导的HIF-1alpha细胞存活途径。

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摘要

We previously showed that treatment of prostate cancer cells with soy isoflavones and radiation resulted in greater cell killing in vitro, and caused downregulation of NF-kappaB and APE1/Ref-1. APE1/Ref-1 functions as a redox activator of transcription factors, including NF-kappaB and HIF-1alpha. These molecules are upregulated by radiation and implicated in radioresistance of cancer cells. We extended our studies to investigate the role of HIF-1alpha survival pathway and its upstream Src and STAT3 molecules in isoflavones and radiation interaction. Radiation induced phosphorylation of Src and STAT3 leading to induction of HIF-1alpha. Genistein, daidzein or a mixture of soy isoflavones did not activate this pathway. These data were observed both in PC-3 (AR-) and C4-2B (AR+) androgen-independent cell lines. Pretreatment with isoflavones inhibited Src/STAT3/HIF-1alpha activation by radiation and nuclear translocation of HIF-1alpha. These findings correlated with decreased expression of APE1/Ref-1 and DNA binding activity of HIF-1alpha and NF-kappaB. In APE1/Ref-1 cDNA transfected cells, radiation caused a greater increase in HIF-1alpha and NF-kappaB activities but this effect was inhibited by pretreatment with soy prior to radiation. Transfection experiments indicate that APE1/Ref-1 inhibition by isoflavones impairs the radiation-induced transcription activity of NF-kappaB and HIF-1alpha. This mechanism could result in the inhibition of genes essential for tumor growth and angiogenesis, as demonstrated by inhibition of VEGF production and HUVECs tube formation. Our novel findings suggest that the increased responsiveness to radiation mediated by soy isoflavones could be due to pleiotropic effects of isoflavones blocking cell survival pathways induced by radiation including Src/STAT3/HIF-1alpha, APE1/Ref-1 and NF-kappaB.
机译:我们以前表明,用大豆异黄酮和放射线治疗前列腺癌细胞会导致更大的体外细胞杀伤,并导致NF-κB和APE1 / Ref-1的下调。 APE1 / Ref-1充当转录因子(包括NF-κB和HIF-1alpha)的氧化还原激活剂。这些分子被辐射上调,并与癌细胞的抗辐射性有关。我们扩展了研究范围,以研究HIF-1alpha生存途径及其上游Src和STAT3分子在异黄酮和辐射相互作用中的作用。辐射诱导Src和STAT3磷酸化,导致诱导HIF-1alpha。金雀异黄素,大豆苷元或大豆异黄酮的混合物未激活该途径。在PC-3(AR-)和C4-2B(AR +)雄激素非依赖性细胞系中均观察到这些数据。异黄酮预处理通过辐射和HIF-1alpha的核易位来抑制Src / STAT3 / HIF-1alpha的激活。这些发现与APE1 / Ref-1的表达降低以及HIF-1alpha和NF-κB的DNA结合活性有关。在APE1 / Ref-1 cDNA转染的细胞中,辐射引起HIF-1alpha和NF-κB活性的更大增加,但是这种作用在辐射之前被大豆预处理抑制了。转染实验表明,异黄酮对APE1 / Ref-1的抑制作用会削弱辐射诱导的NF-κB和HIF-1alpha的转录活性。这种机制可能导致抑制肿瘤生长和血管生成必不可少的基因,如抑制VEGF产生和HUVECs管形成所证明的。我们的新发现表明,大豆异黄酮对辐射的反应性增强可能归因于异黄酮的多效作用,阻断了包括Src / STAT3 / HIF-1alpha,APE1 / Ref-1和NF-kappaB辐射所诱导的细胞存活途径。

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