Tang Tracy Tzu-Ling, Lasky Laurence A
Department of Molecular Oncology, Genentech, Inc., South San Francisco, California 94080, USA.
J Biol Chem. 2003 Aug 8;278(32):30125-35. doi: 10.1074/jbc.M302042200. Epub 2003 May 21.
Tumors utilize hyperactivation of the phosphatidylinositol 3-kinase (PI3K)/AKT signaling pathway to cope with deleterious environmental conditions. Activation of the PI3K/AKT pathway has been shown to increase protein expression of the alpha subunit of the hypoxia-inducible factor (HIF) 1, a key regulator of oxygen homeostasis. Elevated levels of HIF-1 alpha induce expression of genes with critical roles in angiogenesis, erythropoiesis, and glucose metabolism, processes that are essential for tumor expansion. Here we examine the involvement of FOXO4 (also known as AFX), a member of the forkhead transcription factor superfamily that is negatively regulated by the PI3K/AKT pathway, in the regulation of HIF-1 alpha protein expression. Nuclear expression of FOXO4 results in the suppression of various responses to hypoxia, including decreased vascular endothelial growth factor, glucose transporter 1, and erythropoietin expression. Interestingly, FOXO4 down-regulates the HIF-1 alpha protein levels, consistent with the lack of hypoxia responsiveness. Previous results have revealed a role for prolyl hydroxylation and resultant von Hippel-Lindau protein (pVHL) interactions in the ubiquitin-proteasome-mediated degradation of HIF-1 alpha. However, neither inhibition of prolyl hydroxylases nor mutation of HIF-1 alpha-hydroxylated prolines involved with pVHL-mediated binding inhibits the observed FOXO4-mediated down-regulation of HIF-1 alpha. These results suggest a novel alternate mechanism for hypoxic regulation that is dependent upon the level of activation of FOXO4-mediated transcription.
肿瘤利用磷脂酰肌醇3激酶(PI3K)/AKT信号通路的过度激活来应对有害的环境条件。PI3K/AKT通路的激活已被证明可增加缺氧诱导因子(HIF)1α亚基的蛋白表达,HIF-1是氧稳态的关键调节因子。HIF-1α水平升高会诱导在血管生成、红细胞生成和葡萄糖代谢中起关键作用的基因表达,这些过程对肿瘤扩展至关重要。在这里,我们研究叉头转录因子超家族成员FOXO4(也称为AFX)在HIF-1α蛋白表达调控中的作用,FOXO4受PI3K/AKT通路负调控。FOXO4的核表达会抑制对缺氧的各种反应,包括血管内皮生长因子、葡萄糖转运蛋白1和促红细胞生成素表达的降低。有趣的是,FOXO4下调HIF-1α蛋白水平,这与缺乏缺氧反应性一致。先前的结果揭示了脯氨酰羟化以及由此产生的冯·希佩尔-林道蛋白(pVHL)相互作用在泛素-蛋白酶体介导的HIF-1α降解中的作用。然而,抑制脯氨酰羟化酶或与pVHL介导的结合相关的HIF-1α羟化脯氨酸突变均不能抑制观察到的FOXO4介导的HIF-1α下调。这些结果提示了一种依赖于FOXO4介导转录激活水平的缺氧调节新的替代机制。