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慢性缺氧导致PC12细胞出现糖酵解表型并抑制缺氧诱导因子-2(HIF-2)信号传导。

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

作者信息

Zhdanov Alexander V, Dmitriev Ruslan I, Golubeva Anna V, Gavrilova Svetlana A, Papkovsky Dmitri B

机构信息

Biochemistry Department, University College Cork, Cork, Ireland.

出版信息

Biochim Biophys Acta. 2013 Jun;1830(6):3553-69. doi: 10.1016/j.bbagen.2013.02.016. Epub 2013 Feb 24.

Abstract

BACKGROUND

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.

METHODS

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.

RESULTS

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.

CONCLUSIONS

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.

GENERAL SIGNIFICANCE

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.

摘要

背景

与细胞代谢的其他调节因子一起,缺氧诱导因子HIF-1和HIF-2对细胞适应缺氧的调节存在差异。慢性缺氧时HIF-1/HIF-2信号通路的转换尚未得到充分研究。

方法

使用在3%氧气条件下连续培养的肿瘤PC12和SH-SY5Y细胞,检测细胞增殖、活力、凋亡、神经元和生物能量标志物、线粒体功能、呼吸、糖酵解、HIF信号通路以及对氧和葡萄糖剥夺(OGD)的反应。

结果

缺氧的PC12细胞(H细胞)表现出增殖减少和组蛋白H4乙酰化降低、非NGF依赖性分化、AMPK激活、Akt抑制、线粒体改变以及对NGF的反应。细胞色素c增加但对凋亡无影响。呼吸减少对细胞ATP影响较小,细胞ATP通过葡萄糖的活化摄取(GLUT1)和利用(HK2、PFK2)得以维持。H细胞对OGD具有抗性,与糖原储备增加有关。HIF-2α蛋白减少,mRNA无变化。与HIF-1α不同,HIF-2α在药理学上或通过缺氧均不稳定。当H细胞在常氧条件下培养时,HIF-2α稳定能力部分恢复。在相同条件下培养的低呼吸SH-SY5Y细胞中,HIF-2α稳定和能量平衡不受影响。

结论

在慢性缺氧的PC12细胞中观察到糖酵解能量平衡、能量保存增加以及对OGD的低敏感性。HIF-2α不再协调对缺氧的适应性反应。

一般意义

慢性缺氧时HIF-1/HIF-2信号通路的转换表明,一方面通过调节节能与增殖减少之间的平衡,另一方面通过调节活跃的细胞生长与肿瘤扩张之间的平衡,可促进细胞在能量危机中的存活。

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