Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10899718 | Cancer Letters | 2015 | 9 Pages |
Abstract
IL-32β is highly expressed and increases the migration and invasion of gastric, lung, and breast cancer cells. Since IL-32 enhances VEGF production under hypoxic conditions, whether IL-32β is regulated by hypoxia was examined. Hypoxic conditions and a mimetic chemical CoCl2 enhanced IL-32β production. When cells were treated with various inhibitors of ROS generation to prevent hypoxia-induced ROS function, IL-32β production was suppressed by both NADPH oxidase and mitochondrial ROS inhibitors. IL-32β translocated to the mitochondria under hypoxic conditions, where it was associated with mitochondrial biogenesis. Thus, whether hypoxia-induced IL-32β is associated with oxidative phosphorylation (OXPHOS) or glycolysis was examined. Glycolysis under aerobic and anaerobic conditions is impaired in IL-32β-depleted cells, and the hypoxia-induced IL-32β increased glycolysis through activation of lactate dehydrogenase. Src is also known to increase lactate dehydrogenase activity, and the hypoxia-induced IL-32β was found to stimulate Src activation by inhibiting the dephosphorylation of Src. These findings revealed that a hypoxia-ROS-IL-32β-Src-glycolysis pathway is associated with the regulation of cancer cell metabolism.
Keywords
LDH-APDK1HIF-1PPPOXPHOSOCRIL-32ECARPP2APKM2ROSInterleukin-32Mitochondrial biogenesishypoxia inducible factor-1Oxidative phosphorylationLactate dehydrogenase Apentose phosphate pathwayOxygen consumption rateextracellular acidification rateHypoxiaprotein phosphatase 2APyruvate kinase M2Pyruvate dehydrogenase kinaseGlycolysisReactive oxygen species
Related Topics
Life Sciences
Biochemistry, Genetics and Molecular Biology
Cancer Research
Authors
Jeong Su Park, Sunyi Lee, Ae Lee Jeong, Sora Han, Hye In Ka, Jong-Seok Lim, Myung Sok Lee, Do-Young Yoon, Jeong-Hyung Lee, Young Yang,