Lee Hsin-Chen, Hsu Li-Sung, Yin Pen-Hui, Lee Liang-Ming, Chi Chin-Wen
Department and Institute of Pharmacology, School of Medicine, National Yang-Ming University, Taipei, Taiwan 112, Republic of China.
Mitochondrion. 2007 Feb-Apr;7(1-2):157-63. doi: 10.1016/j.mito.2006.11.016. Epub 2006 Dec 8.
Somatic mutations in mitochondrial DNA (mtDNA) have been demonstrated in various human cancers. Many cancers have high frequently of mtDNA with homoplasmic point mutations, and carry less frequently of mtDNA with large-scale deletions as compared with corresponding non-cancerous tissue. Moreover, most cancers harbor a decreased copy number of mtDNA than their corresponding non-cancerous tissue. However, it is unclear whether the process of decreasing in mtDNA content would be involved in an increase in the heteroplasmic level of somatic mtDNA point mutation, and/or involved in a decrease in the proportion of mtDNA with large-scale deletion in cancer cells. In this study, we provided evidence that the heteroplasmic levels of variations in cytidine number in np 303-309 poly C tract of mtDNA in three colon cancer cells were not changed during an ethidium bromide-induced mtDNA depleting process. In the mtDNA depleting process, the proportions of mtDNA with 4977-bp deletion in cybrid cells were not significantly altered. These results suggest that the decreasing process of mtDNA copy number per se may neither contribute to the shift of homoplasmic/heteroplasmic state of point mutation in mtDNA nor to the decrease in proportion of mtDNA with large-scale deletions in cancer cells. Mitochondrial genome instability and reduced mtDNA copy number may independently occur in human cancer.
线粒体DNA(mtDNA)的体细胞突变已在多种人类癌症中得到证实。与相应的非癌组织相比,许多癌症中mtDNA发生同质性点突变的频率较高,而发生大规模缺失的mtDNA频率较低。此外,大多数癌症中mtDNA的拷贝数低于其相应的非癌组织。然而,尚不清楚mtDNA含量的降低过程是否会导致体细胞mtDNA点突变异质性水平的增加,和/或导致癌细胞中大规模缺失的mtDNA比例降低。在本研究中,我们提供了证据表明,在溴化乙锭诱导的mtDNA耗竭过程中,三种结肠癌细胞中mtDNA第303 - 309位多聚C序列中胞嘧啶数量变异的异质性水平没有改变。在mtDNA耗竭过程中,胞质杂种细胞中发生4977 bp缺失的mtDNA比例没有显著变化。这些结果表明,mtDNA拷贝数的降低过程本身可能既不会导致mtDNA点突变的同质性/异质性状态的转变,也不会导致癌细胞中大规模缺失的mtDNA比例降低。线粒体基因组不稳定性和mtDNA拷贝数减少可能在人类癌症中独立发生。