mtDNA mutations increase tumorigenicity in prostate cancer
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- 12 January 2005
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 102 (3) , 719-724
- https://doi.org/10.1073/pnas.0408894102
Abstract
Mutations in the mtDNA have been found to fulfill all of the criteria expected for pathogenic mutations causing prostate cancer. Focusing on the cytochrome oxidase subunit I (COI) gene, we found that 11–12% of all prostate cancer patients harbored COI mutations that altered conserved amino acids (mean conservation index = 83%), whereas <2% of no-cancer controls and 7.8% of the general population had COI mutations, the latter altering less conserved amino acids (conservation index = 71%). Four conserved prostate cancer COI mutations were found in multiple independent patients on different mtDNA backgrounds. Three other tumors contained heteroplasmic COI mutations, one of which created a stop codon. This latter tumor also contained a germ-line ATP6 mutation. Thus, both germ-line and somatic mtDNA mutations contribute to prostate cancer. Many tumors have been found to produce increased reactive oxygen species (ROS), and mtDNA mutations that inhibit oxidative phosphorylation can increase ROS production and thus contribute to tumorigenicity. To determine whether mutant tumors had increased ROS and tumor growth rates, we introduced the pathogenic mtDNA ATP6 T8993G mutation into the PC3 prostate cancer cell line through cybrid transfer and tested for tumor growth in nude mice. The resulting mutant (T8993G) cybrids were found to generate tumors that were 7 times larger than the wild-type (T8993T) cybrids, whereas the wild-type cybrids barely grew in the mice. The mutant tumors also generated significantly more ROS. Therefore, mtDNA mutations do play an important role in the etiology of prostate cancer.Keywords
This publication has 47 references indexed in Scilit:
- Biochemical analysis of respiratory function in cybrid cell lines harbouring mitochondrial DNA mutationsBiochemical Journal, 2004
- Molecular regulation of angiogenesis and tumorigenesis by signal transduction pathways: evidence of predictable and reproducible patterns of synergy in diverse neoplasmsSeminars in Cancer Biology, 2004
- The ADP/ATP translocator is not essential for the mitochondrial permeability transition poreNature, 2004
- Mitochondrial DNA‐like sequences in the nucleus (NUMTs): Insights into our African origins and the mechanism of foreign DNA integrationHuman Mutation, 2004
- Effects of Purifying and Adaptive Selection on Regional Variation in Human mtDNAScience, 2004
- Early-Onset Renal Cell Carcinoma as a Novel Extraparaganglial Component of SDHB-Associated Heritable ParagangliomaAmerican Journal of Human Genetics, 2004
- Mitochondrial DNA mutations in human colonic crypt stem cellsJournal of Clinical Investigation, 2003
- A Defect in the Cytochrome b Large Subunit in Complex II Causes Both Superoxide Anion Overproduction and Abnormal Energy Metabolism in Caenorhabditis elegansJournal of Biological Chemistry, 2001
- Going APE over ref-1Mutation Research/DNA Repair, 2000
- Mutations in the promoter reveal a cause for the reduced expression of the human manganese superoxide dismutase gene in cancer cellsOncogene, 1999