Abstract
The majority of mitochondrial DNA (mtDNA) mutations that cause human disease are mild to moderately deleterious, yet many random mtDNA mutations would be expected to be severe. To determine the fate of the more severe mtDNA mutations, we introduced mtDNAs containing two mutations that affect oxidative phosphorylation into the female mouse germ line. The severe ND6 mutation was selectively eliminated during oogenesis within four generations, whereas the milder COI mutation was retained throughout multiple generations even though the offspring consistently developed mitochondrial myopathy and cardiomyopathy. Thus, severe mtDNA mutations appear to be selectively eliminated from the female germ line, thereby minimizing their impact on population fitness.
MeSH Terms
Animals
Cardiomyopathies/genetics,pathology
Cell Line
Crosses, Genetic
DNA, Mitochondrial/genetics
Electron Transport Complex I/metabolism
Electron Transport Complex IV/genetics,metabolism
Embryonic Stem Cells
Female
Frameshift Mutation
Germ-Line Mutation
Litter Size
Male
Mice
Mitochondria/physiology
Mitochondrial Myopathies/genetics,pathology
Mutation, Missense
Myocardium/pathology
NADH Dehydrogenase/genetics
Oocytes/physiology
Oogenesis
Oxidative Phosphorylation
Oxygen Consumption
Point Mutation
Selection, Genetic
Chemicals
DNA, Mitochondrial
NADH Dehydrogenase
NADH dehydrogenase subunit 6, mouse
Electron Transport Complex IV
cytochrome c oxidase subunit I, mouse
Electron Transport Complex I
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Fan Weiwei
Center for Molecular and Mitochondrial Medicine and Genetics, University of California, Irvine, CA 92697, USA.
Waymire Katrina G
Narula Navneet
Li Peng
Rocher Christophe
Coskun Pinar E
Vannan Mani A
Narula Jagat
Macgregor Grant R
Wallace Douglas C
References (16)
16 references, click to expand
-
Maternal germ-line transmission of mutant mtDNAs from embryonic stem cell-derived chimeric mice.
Proc Natl Acad Sci U S A. 2000 Dec 19;97(26):14461-6
PMID: 11106380
-
Opposing effects of glutathione depletion and follicle-stimulating hormone on reactive oxygen species and apoptosis in cultured preovulatory rat follicles.
Endocrinology. 2006 Mar;147(3):1224-36
PMID: 16339198
-
Apoptosis in the ovary: molecular mechanisms.
Hum Reprod Update. 2005 Mar-Apr;11(2):162-77
PMID: 15705959
-
Production of transmitochondrial mouse cell lines by cybrid rescue of rhodamine-6G pre-treated L-cells.
Somat Cell Mol Genet. 1996 Jan;22(1):81-5
PMID: 8643997
-
A mitochondrial paradigm of metabolic and degenerative diseases, aging, and cancer: a dawn for evolutionary medicine.
Annu Rev Genet. 2005;39:359-407
PMID: 16285865
-
The mtDNA-encoded ND6 subunit of mitochondrial NADH dehydrogenase is essential for the assembly of the membrane arm and the respiratory function of the enzyme.
EMBO J. 1998 Aug 17;17(16):4848-58
PMID: 9707444
-
Transfer of chloramphenicol-resistant mitochondrial DNA into the chimeric mouse.
Transgenic Res. 1999 Apr;8(2):137-45
PMID: 10481313
-
Generation of trans-mitochondrial mice carrying homoplasmic mtDNAs with a missense mutation in a structural gene using ES cells.
Hum Mol Genet. 2006 Mar 15;15(6):871-81
PMID: 16449238
-
An intragenic suppressor in the cytochrome c oxidase I gene of mouse mitochondrial DNA.
Hum Mol Genet. 2003 Feb 1;12(3):329-39
PMID: 12554686
-
The ADP/ATP translocator is not essential for the mitochondrial permeability transition pore.
Nature. 2004 Jan 29;427(6973):461-5
PMID: 14749836
-
Inhibitors of oxidative stress mimic the ability of follicle-stimulating hormone to suppress apoptosis in cultured rat ovarian follicles.
Endocrinology. 1995 Jan;136(1):242-52
PMID: 7828537
-
Random genetic drift in the female germline explains the rapid segregation of mammalian mitochondrial DNA.
Nat Genet. 1996 Oct;14(2):146-51
PMID: 8841183
-
Evidence for adaptive selection acting on the tRNA and rRNA genes of human mitochondrial DNA.
Hum Mutat. 2006 Nov;27(11):1072-81
PMID: 16947981
-
Effects of purifying and adaptive selection on regional variation in human mtDNA.
Science. 2004 Jan 9;303(5655):223-6
PMID: 14716012
-
Why do we still have a maternally inherited mitochondrial DNA? Insights from evolutionary medicine.
Annu Rev Biochem. 2007;76:781-821
PMID: 17506638
-
The epidemiology of mitochondrial disorders--past, present and future.
Biochim Biophys Acta. 2004 Dec 6;1659(2-3):115-20
PMID: 15576042