Bertram Katharina, Valcu Cristina-Maria, Weitnauer Michael, Linne Uwe, Görlach Agnes
Experimental and Molecular Paediatric Cardiology, German Heart Centre Munich at the Technical University Munich, Lazarettstr. 36, Munich, Germany.
Chemistry Department-Mass Spectrometry, Philipps-University Marburg, Hans-Meerwein-Strasse, Marburg, Germany.
PLoS One. 2015 Mar 25;10(3):e0122002. doi: 10.1371/journal.pone.0122002. eCollection 2015.
NADPH oxidases are important sources of reactive oxygen species (ROS) which act as signaling molecules in the regulation of protein expression, cell proliferation, differentiation, migration and cell death. The NOX1 subunit is over-expressed in several cancers and NOX1 derived ROS have been repeatedly linked with tumorigenesis and tumor progression although underlying pathways are ill defined. We engineered NOX1-depleted HepG2 hepatoblastoma cells and employed differential display 2DE experiments in order to investigate changes in NOX1-dependent protein expression profiles. A total of 17 protein functions were identified to be dysregulated in NOX1-depleted cells. The proteomic results support a connection between NOX1 and the Warburg effect and a role for NOX in the regulation of glucose and glutamine metabolism as well as of lipid, protein and nucleotide synthesis in hepatic tumor cells. Metabolic remodeling is a common feature of tumor cells and understanding the underlying mechanisms is essential for the development of new cancer treatments. Our results reveal a manifold involvement of NOX1 in the metabolic remodeling of hepatoblastoma cells towards a sustained production of building blocks required to maintain a high proliferative rate, thus rendering NOX1 a potential target for cancer therapy.
NADPH氧化酶是活性氧(ROS)的重要来源,ROS在蛋白质表达、细胞增殖、分化、迁移和细胞死亡的调节中作为信号分子发挥作用。NOX1亚基在几种癌症中过度表达,尽管其潜在途径尚不明确,但源自NOX1的ROS已多次与肿瘤发生和肿瘤进展相关联。我们构建了NOX1缺失的肝癌细胞系HepG2,并采用差异显示二维电泳实验来研究NOX1依赖性蛋白质表达谱的变化。共鉴定出17种蛋白质功能在NOX1缺失的细胞中失调。蛋白质组学结果支持NOX1与瓦伯格效应之间的联系,以及NOX在肝肿瘤细胞中对葡萄糖和谷氨酰胺代谢以及脂质、蛋白质和核苷酸合成的调节作用。代谢重塑是肿瘤细胞的一个共同特征,了解其潜在机制对于开发新的癌症治疗方法至关重要。我们的结果揭示了NOX1在肝癌细胞代谢重塑中具有多方面的作用,使其朝着持续产生维持高增殖率所需的构件的方向发展,从而使NOX1成为癌症治疗的潜在靶点。