[1] |
Al Rawi, S., Louvet-Vallée, S., Djeddi, A. et al. Postfertilization autophagy of sperm organelles prevents paternal mitochondrial DNA transmission Science, 334 (2011),pp. 1144-1147
|
[2] |
Bacman, S.R., Williams, S.L., Garcia, S. et al. Organ-specific shifts in mtDNA heteroplasmy following systemic delivery of a mitochondria-targeted restriction endonuclease Gene Ther., 17 (2010),pp. 713-720
|
[3] |
Bacman, S.R., Williams, S.L., Pinto, M. et al. Specific elimination of mutant mitochondrial genomes in patient-derived cells by mitoTALENs Nat. Med., 19 (2013),pp. 1111-1113
|
[4] |
Barboni, P., Valentino, M.L., La Morgia, C. et al. Brain, 136 (2013)
|
[5] |
Boch, J. TALEs of genome targeting Nat. Biotech., 29 (2011),pp. 135-136
|
[6] |
Carroll, D. Genome engineering with zinc-finger nucleases Genetics, 188 (2011),pp. 773-782
|
[7] |
Choulika, A., Perrin, A., Dujon, B. et al. Mol. Cell. Biol., 15 (1995),pp. 1968-1973
|
[8] |
Colagar, A.H., Mosaieby, E., Seyedhassani, S.M. et al. T4216C mutation in NADH dehydrogenase I gene is associated with recurrent pregnancy loss Mitochondrial DNA, 24 (2013),pp. 610-612
|
[9] |
Cong, L., Ran, F.A., Cox, D. et al. Multiplex genome engineering using CRISPR/Cas systems Science, 339 (2013),pp. 819-823
|
[10] |
DeLuca, S.Z., O'Farrell, P.H. Barriers to male transmission of mitochondrial DNA in sperm development Dev. Cell, 22 (2012),pp. 660-668
|
[11] |
Fantin, V.R., St-Pierre, J., Leder, P. Attenuation of LDH-A expression uncovers a link between glycolysis, mitochondrial physiology, and tumor maintenance Cancer Cell, 9 (2006),pp. 425-434
|
[12] |
Freyer, C., Cree, L.M., Mourier, A. et al. Variation in germline mtDNA heteroplasmy is determined prenatally but modified during subsequent transmission Nat. Genet., 44 (2012),pp. 1282-1285
|
[13] |
Gorman, G.S., Schaefer, A.M., Ng, Y. et al. Prevalence of nuclear and mitochondrial DNA mutations related to adult mitochondrial disease Ann. Neurol., 77 (2015),pp. 753-759
|
[14] |
Goto, Y., Nonaka, I., Horai, S. A mutation in the tRNA(Leu)(UUR) gene associated with the MELAS subgroup of mitochondrial encephalomyopathies Nature, 348 (1990),pp. 651-653
|
[15] |
Guilinger, J.P., Pattanayak, V., Reyon, D. et al. Broad specificity profiling of TALENs results in engineered nucleases with improved DNA-cleavage specificity Nat. Methods, 11 (2014),pp. 429-435
|
[16] |
Haas, R.H. The evidence basis for coenzyme Q therapy in oxidative phosphorylation disease Mitochondrion, 7 (2007),pp. S136-S145
|
[17] |
Harman, D. Free radical theory of aging Mutat. Res., 275 (1992),pp. 257-266
|
[18] |
Hashimoto, M., Bacman, S.R., Peralta, S. et al. MitoTALEN: a general approach to reduce mutant mtDNA loads and restore oxidative phosphorylation function in mitochondrial diseases Mol. Therapy, 23 (2015),pp. 1592-1599
|
[19] |
Herbert, M., Turnbull, D. Mitochondrial donation - clearing the final regulatory hurdle in the United Kingdom N. Engl. J. Med., 376 (2016),pp. 171-173
|
[20] |
Huang, T., Santarelli, R., Starr, A. Brain Res., 1300 (2009),pp. 97-104
|
[21] |
Jiang, P., Jin, X., Peng, Y. et al. Hum. Mol. Genet., 25 (2015),pp. 584-596
|
[22] |
Jinek, M., Chylinski, K., Fonfara, I. et al. A programmable dual-RNA-guided DNA endonuclease in adaptive bacterial immunity Science, 337 (2012),pp. 816-821
|
[23] |
Jo, A., Ham, S., Lee, G.H. et al. Efficient mitochondrial genome editing by CRISPR/Cas9 BioMed Res. Int., 2015 (2015),p. 305716
|
[24] |
Kang, E., Wang, X., Tippner-Hedges, R. et al. Age-related accumulation of somatic mitochondrial DNA mutations in adult-derived human iPSCs Cell Stem Cell, 18 (2016),pp. 625-636
|
[25] |
Kang, E., Wu, J., Gutierrez, N.M. et al. Mitochondrial replacement in human oocytes carrying pathogenic mitochondrial DNA mutations Nature, 540 (2016),pp. 270-275
|
[26] |
Kerr, D.S. Review of clinical trials for mitochondrial disorders: 1997–2012 Neurotherapeutics, 10 (2013),pp. 307-319
|
[27] |
Klopstock, T., Yu-Wai-Man, P., Dimitriadis, K. et al. A randomized placebo-controlled trial of idebenone in Leber's hereditary optic neuropathy Brain, 134 (2011),pp. 2677-2686
|
[28] |
Ladoukakis, E.D., Eyre-Walker, A. Evolutionary genetics: direct evidence of recombination in human mitochondrial DNA Heredity, 93 (2004),p. 321
|
[29] |
Larsson, N.G. Somatic mitochondrial DNA mutations in mammalian aging Annu. Rev. Biochem., 79 (2010),pp. 683-706
|
[30] |
Lodi, R., Tonon, C., Valentino, M.L. et al. Ann. Neurol., 56 (2004),pp. 719-723
|
[31] |
Lohmann, E., Periquet, M., Bonifati, V. et al. How much phenotypic variation can be attributed to parkin genotype? Ann. Neurol., 54 (2003),pp. 176-185
|
[32] |
Majamaa, K., Rusanen, H., Remes, A. et al. Metabolic interventions against complex I deficiency in MELAS syndrome Mol. Cell. Biochem., 174 (1997),pp. 291-296
|
[33] |
Majamaa, K., Rusanen, H., Remes, A.M. et al. Life Sci., 58 (1996),pp. 691-699
|
[34] |
Moretton, A., Morel, F., Macao, B. et al. Selective mitochondrial DNA degradation following double-strand breaks PLoS One, 12 (2017)
|
[35] |
Murphy, R., Turnbull, D.M., Walker, M. et al. Clinical features, diagnosis and management of maternally inherited diabetes and deafness (MIDD) associated with the 3243A>G mitochondrial point mutation Diabet. Med., 25 (2008),pp. 383-399
|
[36] |
O'Connell, M., McClure, N., Lewis, S.E.M. Mitochondrial DNA deletions and nuclear DNA fragmentation in testicular and epididymal human sperm Hum. Reprod., 17 (2002),pp. 1565-1570
|
[37] |
Onyango, I.G., Dennis, J., Khan, S.M. Mitochondrial dysfunction in Alzheimer's disease and the rationale for bioenergetics based therapies Aging Dis., 7 (2016),pp. 201-214
|
[38] |
Ou, X.H., Sun, Q.Y. Mitochondrial replacement techniques or therapies (MRTs) to improve embryo development and to prevent mitochondrial disease transmission J.Genet. Genomics, 44 (2017),pp. 371-374
|
[39] |
Penn, A.M., Lee, J.W., Thuillier, P. et al. MELAS syndrome with mitochondrial tRNA(Leu)(UUR) mutation: correlation of clinical state, nerve conduction, and muscle 31P magnetic resonance spectroscopy during treatment with nicotinamide and riboflavin Neurology, 42 (1992),pp. 2147-2152
|
[40] |
Poorkaj, P., Nutt, J.G., James, D. et al. Parkin mutation analysis in clinic patients with early-onset Parkinson's disease Am. J. Med. Genet. A, 129a (2004),pp. 44-50
|
[41] |
Reddy, P., Ocampo, A., Suzuki, K. et al. Selective elimination of mitochondrial mutations in the germline by genome editing Cell, 161 (2015),pp. 459-469
|
[42] |
Reddy, P.H., Manczak, M., Mao, P. et al. Amyloid-beta and mitochondria in aging and Alzheimer's disease: implications for synaptic damage and cognitive decline J. Alzheimer's Dis., 20 (2010),pp. S499-S512
|
[43] |
Rodriguez, M.C., MacDonald, J.R., Mahoney, D.J. et al. Beneficial effects of creatine, CoQ10, and lipoic acid in mitochondrial disorders Muscle Nerve, 35 (2007),pp. 235-242
|
[44] |
Rong, Y.S., Golic, K.G. Science, 288 (2000),pp. 2013-2018
|
[45] |
Safdar, A., Bourgeois, J.M., Ogborn, D.I. et al. Endurance exercise rescues progeroid aging and induces systemic mitochondrial rejuvenation in mtDNA mutator mice Proc. Natl. Acad. Sci. U. S. A., 108 (2011),pp. 4135-4140
|
[46] |
Sasarman, F., Antonicka, H., Shoubridge, E.A. Hum. Mol. Genet., 17 (2008),pp. 3697-3707
|
[47] |
Sato, M., Sato, K. Science, 334 (2011),pp. 1141-1144
|
[48] |
Schwartz, M., Vissing, J. Paternal inheritance of mitochondrial DNA N. Engl. J. Med., 347 (2002),pp. 576-580
|
[49] |
Shankar, S.P., Fingert, J.H., Carelli, V. et al. Evidence for a novel x-linked modifier locus for leber hereditary optic neuropathy Ophthalmic Genet., 29 (2008),pp. 17-24
|
[50] |
Shim, H., Chun, Y.S., Lewis, B.C. et al. A unique glucose-dependent apoptotic pathway induced by c-Myc Proc. Natl. Acad. Sci. U. S. A., 95 (1998),pp. 1511-1516
|
[51] |
Siddiq, I., Widjaja, E., Tein, I. Clinical and radiologic reversal of stroke-like episodes in MELAS with high-dose L-arginine Neurology, 85 (2015),pp. 197-198
|
[52] |
Srivastava, S., Moraes, C.T. Manipulating mitochondrial DNA heteroplasmy by a mitochondrially targeted restriction endonuclease Hum. Mol. Genet., 10 (2001),pp. 3093-3099
|
[53] |
Stacpoole, P.W., deGrauw, T.J., Feigenbaum, A.S. et al. Mitochondrion, 12 (2012),pp. 623-629
|
[54] |
Tachibana, M., Sparman, M., Sritanaudomchai, H. et al. Mitochondrial gene replacement in primate offspring and embryonic stem cells Nature, 461 (2009),pp. 367-372
|
[55] |
Tang, S., Le, P.K., Tse, S. et al. PLoS One, 4 (2009),p. e4492
|
[56] |
Wallace, D.C. A mitochondrial paradigm of metabolic and degenerative diseases, aging, and cancer: a dawn for evolutionary medicine Annu. Rev. Genet., 39 (2005),pp. 359-407
|
[57] |
Wallace, D.C. Why do we still have a maternally inherited mitochondrial DNA? Insights from evolutionary medicine Annu. Rev. Biochem., 76 (2007),pp. 781-821
|
[58] |
Wallace, D.C., Chalkia, D. Mitochondrial DNA genetics and the heteroplasmy conundrum in evolution and disease Cold Spring Harb. Perspect. Med, 3 (2013)
|
[59] |
Wang, G., Shimada, E., Zhang, J. et al. Correcting human mitochondrial mutations with targeted RNA import Proc. Natl. Acad. Sci. U. S. A., 109 (2012),pp. 4840-4845
|
[60] |
Warburg, O. On the origin of cancer cells Science, 123 (1956),pp. 309-314
|
[61] |
Zhang, J., Liu, H., Luo, S. et al. Live birth derived from oocyte spindle transfer to prevent mitochondrial disease Reprod. Biomed. Online, 34 (2017),pp. 361-368
|
[62] |
Zhou, Q., Li, H., Li, H. et al. Mitochondrial endonuclease G mediates breakdown of paternal mitochondria upon fertilization Science, 353 (2016),pp. 394-399
|