Department of Mycology and Genetics, University of Wroclaw, 51-148 Wroclaw, Poland.
Laboratory of Medical Microbiology, Department of Immunology of Infectious Diseases, Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, 53-114 Wroclaw, Poland.
Int J Mol Sci. 2021 Jun 21;22(12):6640. doi: 10.3390/ijms22126640.
3-bromopuryvate (3-BP) is a compound with unique antitumor activity. It has a selective action against tumor cells that exhibit the Warburg effect. It has been proven that the action of 3-BP is pleiotropic: it acts on proteins, glycolytic enzymes, reduces the amount of ATP, induces the formation of ROS (reactive oxygen species), and induces nuclear DNA damage. Mitochondria are important organelles for the proper functioning of the cell. The production of cellular energy (ATP), the proper functioning of the respiratory chain, or participation in the production of amino acids are one of the many functions of mitochondria. Here, for the first time, we show on the yeast model that 3-BP acts in the eukaryotic cell also by influence on mitochondria and that agents inhibiting mitochondrial function can potentially be used in cancer therapy with 3-BP. We show that cells with functional mitochondria are more resistant to 3-BP than cells. Using an MTT assay (a colorimetric assay for assessing cell metabolic activity), we demonstrated that 3-BP decreased mitochondrial activity in yeast in a dose-dependent manner. 3-BP induces mitochondrial-dependent ROS generation which results in ∆, ∆, or ∆ mutant sensitivity to 3-BP. Probably due to ROS mtDNA lesions rise during 3-BP treatment. Our findings may have a significant impact on the therapy with 3-BP.
3-溴丙酮酸(3-BP)是一种具有独特抗肿瘤活性的化合物。它对表现出瓦博格效应的肿瘤细胞具有选择性作用。已经证明,3-BP 的作用是多效性的:它作用于蛋白质、糖酵解酶,降低 ATP 量,诱导 ROS(活性氧)的形成,并诱导核 DNA 损伤。线粒体是细胞正常功能的重要细胞器。细胞能量(ATP)的产生、呼吸链的正常功能或参与氨基酸的产生是线粒体的众多功能之一。在这里,我们首次在酵母模型上表明,3-BP 还通过对线粒体的影响在真核细胞中起作用,并且抑制线粒体功能的试剂可能与 3-BP 一起用于癌症治疗。我们表明,具有功能线粒体的细胞比没有线粒体的细胞对 3-BP 的抗性更强。使用 MTT 测定法(用于评估细胞代谢活性的比色测定法),我们证明 3-BP 以剂量依赖的方式降低酵母中的线粒体活性。3-BP 诱导线粒体依赖性 ROS 生成,这导致 ∆、∆、或 ∆ 突变体对 3-BP 敏感。可能是由于 ROS 导致 mtDNA 损伤在 3-BP 治疗期间增加。我们的发现可能对 3-BP 的治疗有重大影响。