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Mitochondrial Genome Acquisition Restores Respiratory Function and Tumorigenic Potential of Cancer Cells without Mitochondrial DNA

机译:线粒体基因组的获取恢复了不带线粒体DNA的癌细胞的呼吸功能和致瘤潜力

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We report that tumor cells without mitochondrial DNA (mtDNA) show delayed tumor growth, and that tumor formation is associated with acquisition of mtDNA from host cells. This leads to partial recovery of mitochondrial function in cells derived from primary tumors grown from cells without mtDNA and a shorter lag in tumor growth. Cell lines from circulating tumor cells showed further recovery of mitochondrial respiration and an intermediate lag to tumor growth, while cells from lung metastases exhibited full restoration of respiratory function and no lag in tumor growth. Stepwise assembly of mitochondrial respiratory (super) complexes was correlated with acquisition of respiratory function. Our findings indicate horizontal transfer of mtDNA from host cells in the tumor microenvironment to tumor cells with compromised respiratory function to reestablish respiration and tumor-initiating efficacy. These results suggest pathophysiological processes for overcoming mtDNA damage and support the notion of high plasticity of malignant cells.
机译:我们报告说,没有线粒体DNA(mtDNA)的肿瘤细胞显示出延迟的肿瘤生长,并且肿瘤的形成与从宿主细胞获得mtDNA有关。这导致源自原发性肿瘤的细胞中线粒体功能的部分恢复,所述原发性肿瘤是从没有mtDNA的细胞生长而来的,并且肿瘤生长的滞后时间更短。来自循环肿瘤细胞的细胞系显示线粒体呼吸进一步恢复,并且存在肿瘤生长的中间滞后,而来自肺转移瘤的细胞显示出呼吸功能的完全恢复并且肿瘤生长没有滞后。线粒体呼吸(超级)复合物的逐步组装与呼吸功能的获得相关。我们的发现表明,mtDNA从肿瘤微环境中的宿主细胞水平转移到呼吸功能受损的肿瘤细胞上,以重新建立呼吸作用和肿瘤启动功效。这些结果表明克服了mtDNA损伤的病理生理过程,并支持了恶性细胞高可塑性的概念。

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