Chiba Mayumi, Yokoyama Chikako, Okada Mai, Hisatomi Hisashi
Laboratory of Cellular and Molecular Biochemistry, Department of Materials and Life Science, Seikei University, 3-3-1 Kichijoji Kitamachi, Musashino, Tokyo, 180-8633, Japan.
Tumour Biol. 2014 Dec;35(12):12689-93. doi: 10.1007/s13277-014-2593-6. Epub 2014 Sep 13.
Three-dimensional (3D) cell culture reflects many of the important properties of solid tumors, such as the inadequate diffusion of oxygen that results in hypoxia. To understand the mitochondrial states in cancer, we performed comparisons of the levels of mitochondrial DNA (mtDNA), fusion- and fission-related mitochondrial messenger RNA (mRNA), and mitochondrial protein expression between monolayer (2D)- and 3D-cultured cancer cells. The mtDNA levels were observed to be significantly lower in the 3D cells compared with the monolayer cells. In contrast, the differences in expression of the mitochondrial fusion- and fission-related mRNAs and mitochondrial proteins between 2D- and 3D-cultured cancer cells were not significant, as shown by real-time PCR and immunoblot analysis. Therefore, although mtDNA levels decrease as a whole during 3D culture, this does not appear to affect the fusion and fission of individual mitochondria. Indeed, the factors regulating mitochondrial dynamics during 3D cell culture remain unclear. This study provides the basis for future, more detailed studies on the regulation of mtDNA.
三维(3D)细胞培养反映了实体瘤的许多重要特性,例如氧气扩散不足导致缺氧。为了解癌症中的线粒体状态,我们对单层(2D)培养和3D培养的癌细胞之间的线粒体DNA(mtDNA)水平、与线粒体融合和裂变相关的信使核糖核酸(mRNA)以及线粒体蛋白表达进行了比较。观察到3D细胞中的mtDNA水平明显低于单层细胞。相比之下,实时聚合酶链反应(PCR)和免疫印迹分析表明,2D和3D培养的癌细胞之间与线粒体融合和裂变相关的mRNA及线粒体蛋白的表达差异不显著。因此,尽管在3D培养过程中mtDNA水平整体下降,但这似乎并不影响单个线粒体的融合和裂变。实际上,3D细胞培养过程中调节线粒体动力学的因素仍不清楚。本研究为未来更详细地研究mtDNA的调控提供了基础。