Lu Huasheng, Dalgard Clifton L, Mohyeldin Ahmed, McFate Thomas, Tait A Sasha, Verma Ajay
Department of Neurology, Uniformed Services University of the Health Sciences, Bethesda, Maryland 20814, USA.
J Biol Chem. 2005 Dec 23;280(51):41928-39. doi: 10.1074/jbc.M508718200. Epub 2005 Oct 13.
Continuous hydroxylation of the HIF-1 transcription factor alpha subunit by oxygen and 2-oxoglutarate-dependent dioxygenases promotes decay of this protein and thus prevents the transcriptional activation of many genes involved in energy metabolism, angiogenesis, cell survival, and matrix modification. Hypoxia blocks HIF-1alpha hydroxylation and thus activates HIF-1alpha-mediated gene expression. Several nonhypoxic stimuli can also activate HIF-1, although the mechanisms involved are not well known. Here we show that the glucose metabolites pyruvate and oxaloacetate inactivate HIF-1alpha decay in a manner selectively reversible by ascorbate, cysteine, histidine, and ferrous iron but not by 2-oxoglutarate or oxygen. Pyruvate and oxaloacetate bind to the 2-oxoglutarate site of HIF-1alpha prolyl hydroxylases, but their effects on HIF-1 are not mimicked by other Krebs cycle intermediates, including succinate and fumarate. We show that inactivation of HIF-1 hydroxylation by glucose-derived 2-oxoacids underlies the prominent basal HIF-1 activity commonly seen in many highly glycolytic cancer cells. Since HIF-1 itself promotes glycolytic metabolism, enhancement of HIF-1 by glucose metabolites may constitute a novel feed-forward signaling mechanism involved in malignant progression.
通过氧和2-氧代戊二酸依赖性双加氧酶对低氧诱导因子-1(HIF-1)转录因子α亚基进行持续羟基化,可促进该蛋白的降解,从而防止许多参与能量代谢、血管生成、细胞存活和基质修饰的基因发生转录激活。缺氧会阻断HIF-1α的羟基化,从而激活HIF-1α介导的基因表达。几种非缺氧刺激也可激活HIF-1,尽管其中涉及的机制尚不清楚。在此,我们表明葡萄糖代谢产物丙酮酸和草酰乙酸可使HIF-1α的降解失活,其方式可被抗坏血酸、半胱氨酸、组氨酸和亚铁离子选择性逆转,但不能被2-氧代戊二酸或氧逆转。丙酮酸和草酰乙酸与HIF-1α脯氨酰羟化酶的2-氧代戊二酸位点结合,但其对HIF-1的影响不能被其他三羧酸循环中间体(包括琥珀酸和延胡索酸)模拟。我们表明,葡萄糖衍生的2-氧代酸使HIF-1羟基化失活是许多高度糖酵解癌细胞中常见的显著基础HIF-1活性的基础。由于HIF-1本身促进糖酵解代谢,葡萄糖代谢产物对HIF-1的增强作用可能构成一种参与恶性进展的新型前馈信号机制。