Hypoxia-induced PPFIA4 accelerates the progression of ovarian cancer through glucose metabolic reprogramming

被引:0
作者
Shu Tan
Hao Yu
Ye Xu
Yue Zhao
Ge Lou
机构
[1] Harbin Medical University Cancer Hospital,Department of Gynecology Oncology
[2] Nangang District of Heilongjiang Provincial Hospital,undefined
来源
Medical Oncology | / 40卷
关键词
Ovarian cancer; Hypoxia; Glycolysis; PPFIA4; HIF1A;
D O I
暂无
中图分类号
学科分类号
摘要
Dysregulated glycolysis promotes growth and metastasis, which is one of the metabolic characteristics of ovarian cancer. Based on bioinformatics analysis, liprin-alpha-4 (PPFIA4) is a gene associated with hypoxia, and we aimed to investigate the potential mechanism of PPFIA4 during the reprogramming of glucose metabolism in ovarian cancer cells. Currently, the cell viability of ovarian cancer cells under the hypoxia treatment was evaluated by CCK-8 assay, and cell migration and invasion were measured by transwell assay and western blot. The effects of hypoxia treatment on glucose uptake, lactate production, extracellular acidification rate (ECAR), adenosine triphosphate (ATP), reactive oxygen species (ROS), Nicotinamide adenine dinucleotide phosphate (NADPH) and its oxidized form NADP + , and oxygen consumption rate (OCR) in ovarian cancer cells were examined. Then PPFIA4 was identified through bioinformatic analysis, and the regulatory effects of PPFIA4 on glucose metabolic reprogramming. Our data suggested that hypoxia enhanced the migration and invasion ability of ovarian cancer cells in vitro, and promoted the glucose metabolic reprogramming of ovarian cancer cells. Ovarian cancer cell viability, migration, and invasion were inhibited after PPFIA4 knockdown. Inhibition of PPFIA4 inhibited hypoxic-induced glucose metabolic reprogramming in ovarian cancer cells. In addition, PPFIA4 was found to bind to hypoxia-inducible factor 1alpha (HIF1A), and HIF1A prominently induced PPFIA4 expression. Collectively, HIF1A mediated upregulation of PPFIA4 and promoted reprogramming of glucose metabolism in ovarian cancer cells. Therefore, PPFIA4 may be a therapeutic target for ovarian cancer intervention.
引用
收藏
相关论文
共 322 条
[1]  
Mennerich D(2019)DUBs, hypoxia, and cancer Trends Cancer 5 632-undefined
[2]  
Kubaichuk K(2016)Hypoxic control of metastasis Science 352 175-undefined
[3]  
Kietzmann T(2019)Role of hypoxia in cancer therapy by regulating the tumor microenvironment Mol Cancer 18 157-undefined
[4]  
Rankin EB(2021)Hypoxia, metabolic reprogramming, and drug resistance in liver cancer Cells 10 1715-undefined
[5]  
Giaccia AJ(2009)The multifaceted role of MTDH/AEG-1 in cancer progression Clin Cancer Res 15 5615-undefined
[6]  
Jing X(2015)HIF-1alpha pathway: role, regulation and intervention for cancer therapy Acta Pharm Sin B 5 378-undefined
[7]  
Yang F(2020)Glucose, glycolysis, and neurodegenerative diseases J Cell Physiol 235 7653-undefined
[8]  
Shao C(2013)Tumor glycolysis as a target for cancer therapy: progress and prospects Mol Cancer 12 152-undefined
[9]  
Wei K(2016)Metabolic reprogramming during neuronal differentiation from aerobic glycolysis to neuronal oxidative phosphorylation Elife 5 e13374-undefined
[10]  
Xie M(2021)The metabolism reprogramming of microRNA Let-7-mediated glycolysis contributes to autophagy and tumor progression Int J Mol Sci 23 113-undefined