4.6 Article

AMP-dependent protein kinase alpha 2 isoform promotes hypoxia-induced VEGF expression in human glioblastoma

期刊

GLIA
卷 53, 期 7, 页码 733-743

出版社

WILEY
DOI: 10.1002/glia.20326

关键词

hypoxia; AMPK; VEGF; HIF-1; glioma

资金

  1. NCI NIH HHS [CA-064436] Funding Source: Medline

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Tumor cells respond to hypoxic stress by upregulating a variety of genes involved in glucose uptake, glycolysis, an angiogenesis, all essential to maintaining nutrient availability and intracellular ATP levels. Adenosine monophosphate-dependent kinase (AMPK) is a key sensor for cellular homeostasis and is highly sensitive to changes in AMP: ATP ratios. The two catalytic AMPK alpha isoforms (AMPK alpha 1, AMPK alpha 2) were investigated with respect to their expression, cellular distribution, and contribution to VEGF expression under hypoxic stress in human U373 glioblastoma cells. Quantitative real-time PCR analysis showed AMPK alpha 1 mRNA to be constitutively expressed in normoxia and bypoxia, whereas AMPKa2 mRNA levels were low in normoxia and significantly induced in hypoxia. Fluorescent immunhistochemistry showed that AMPKa2 protein redistributed to the nucleus under hypoxia, whereas AMPK alpha 1 remained distributed throughout the cell. The AMPK chemical inhibitor, 5-iodotubericidin, effectively repressed the hypoxic induction of VEGF mRNA levels and hypoxia inducible factor-1 dependent transcription. AMPKa2 repression with RNA interference reduced hypoxia-induced VEGF mRNA and HIF-1 transcription, whereas AMPK alpha 1 repression did not. Human glioblastoma cell lines U118 and U138 also showed hypoxia-induction of AMPK alpha 2 as well as VEGF. Immunohistochemistry analysis of human astrocytoma/glioma samples revealed AMPKa2 present in high grade gliomas within hypoxic pseudopalisading microenvironments. These data suggest that prolonged hypoxia promotes the expression and functional activation of AMPK alpha 2 and VEGF production in glioma cell lines and glioblastoma multiform tumors, thus contributing to tumor survival and angiogenesis in high grade human gliomas. (c) 2006 Wiley-Liss, Inc.

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