Chronic hypoxia leads to a glycolytic phenotype and suppressed HIF-2 signaling in PC12 cells

细胞生物学 生物 生物能学 细胞凋亡 缺氧(环境) 安普克 糖酵解 缺氧诱导因子 细胞生长 蛋白激酶B 过剩1 线粒体 信号转导 葡萄糖摄取 化学 内分泌学 新陈代谢 生物化学 磷酸化 蛋白激酶A 胰岛素 氧气 基因 有机化学
作者
Alexander V. Zhdanov,Ruslan I. Dmitriev,Anna V. Golubeva,С. А. Гаврилова,Dmitri B. Papkovsky
出处
期刊:Biochimica Et Biophysica Acta - General Subjects [Elsevier]
卷期号:1830 (6): 3553-3569 被引量:34
标识
DOI:10.1016/j.bbagen.2013.02.016
摘要

Along with other regulators of cell metabolism, hypoxia-inducible factors HIF-1 and HIF-2 differentially regulate cell adaptation to hypoxia. Switches in HIF-1/HIF-2 signaling in chronic hypoxia have not been fully investigated. Proliferation, viability, apoptosis, neuronal and bioenergetic markers, mitochondrial function, respiration, glycolysis, HIF signalling, responses to O2 and glucose deprivation (OGD) were examined using tumor PC12 and SH-SY5Y cells continuously grown at 3% O2. Hypoxic PC12 cells (H-cells) exhibit reduced proliferation and histone H4 acetylation, NGF-independent differentiation, activation of AMPK, inhibition of Akt, altered mitochondria and response to NGF. Cellular cytochrome c is increased with no effect on apoptosis. Reduction in respiration has minor effect on cellular ATP which is maintained through activated uptake (GLUT1) and utilization (HK2, PFK2) of glucose. H-cells exhibit resistance to OGD linked to increased glycogen stores. HIF-2alpha protein is decreased without changes in mRNA. Unlike HIF-1alpha, HIF-2alpha is not stabilized pharmacologically or by O2 deprivation. Capacity for HIF-2alpha stabilization is partly restored when H-cells are cultured at normoxia. In low-respiring SH-SY5Y cells cultured under the same conditions HIF-2alpha stabilization and energy budget are not affected. In chronically hypoxic PC12 cells glycolytic energy budget, increased energy preservation and low susceptibility to OGD are observed. HIF-2alpha no longer orchestrates adaptive responses to anoxia. Demonstrated switch in HIF-1/HIF-2 signaling upon chronic hypoxia can facilitate cell survival in energy crisis, by regulating balance between energy saving and decrease in proliferation, on one hand and active cell growth and tumor expansion, on the other.
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