What causes mitochondrial DNA deletions in human cells?
暂无分享,去创建一个
David C Samuels | Patrick F Chinnery | Robert W Taylor | Robert W. Taylor | D. Turnbull | K. J. Krishnan | P. Chinnery | R. Lightowlers | D. Samuels | J. Blackwood | J. N. Spelbrink | A. Reeve | Sjoerd Wanrooij | Kim J Krishnan | Amy K Reeve | Sjoerd Wanrooij | Doug M Turnbull | Robert N Lightowlers | John K Blackwood | Johannes N Spelbrink | Robert W. Taylor
[1] D. Wallace. Mitochondrial genetics: a paradigm for aging and degenerative diseases? , 1992, Science.
[2] A. Martinuzzi,et al. Marked replicative advantage of human mtDNA carrying a point mutation that causes the MELAS encephalomyopathy. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[3] P. Chinnery,et al. Mitochondrial DNA polymerase-gamma and human disease. , 2006, Human molecular genetics.
[4] D. Wallace,et al. Spontaneous Kearns-Sayre/chronic external ophthalmoplegia plus syndrome associated with a mitochondrial DNA deletion: a slip-replication model and metabolic therapy. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[5] T. Buchholz,et al. Accumulation of the common mitochondrial DNA deletion induced by ionizing radiation , 2004, FEBS letters.
[6] S. Srivastava,et al. Double-strand breaks of mouse muscle mtDNA promote large deletions similar to multiple mtDNA deletions in humans. , 2005, Human molecular genetics.
[7] Laura C. Greaves,et al. Mitochondrial DNA mutations in human colonic crypt stem cells. , 2003, The Journal of clinical investigation.
[8] H. Jacobs,et al. Biased Incorporation of Ribonucleotides on the Mitochondrial L-Strand Accounts for Apparent Strand-Asymmetric DNA Replication , 2002, Cell.
[9] C. Epstein,et al. Familial mitochondrial encephalomyopathy (MERRF): Genetic, pathophysiological, and biochemical characterization of a mitochondrial DNA disease , 1988, Cell.
[10] T. Ono,et al. Molecular nature of ultraviolet B light-induced deletions in the murine epidermis. , 2001, Cancer research.
[11] Laura C. Greaves,et al. Mitochondrial DNA mutations in human disease , 2006, IUBMB life.
[12] Barry Halliwell,et al. Reactive Oxygen Species and the Central Nervous System , 1992, Journal of neurochemistry.
[13] Robert W. Taylor,et al. Risk of developing a mitochondrial DNA deletion disorder , 2004, The Lancet.
[14] A. Munnich,et al. Respiratory chain deficiency in a female with Aicardi‐Goutières syndrome , 2006, Developmental medicine and child neurology.
[15] J. P. Erzberger,et al. The Human Homolog of Escherichia coli Orn Degrades Small Single-stranded RNA and DNA Oligomers* , 2000, The Journal of Biological Chemistry.
[16] Patrick F. Chinnery,et al. Mitochondrial DNA polymerase-γ and human disease , 2006 .
[17] A. D. Grey. A proposed refinement of the mitochondrial free radical theory of aging , 1997 .
[18] T. Ruzicka,et al. Singlet Oxygen Mediates the UVA-induced Generation of the Photoaging-associated Mitochondrial Common Deletion* , 1999, The Journal of Biological Chemistry.
[19] J. N. Spelbrink,et al. Expression of catalytic mutants of the mtDNA helicase Twinkle and polymerase POLG causes distinct replication stalling phenotypes , 2007, Nucleic acids research.
[20] W. Kaufmann,et al. Diagnoses of neuronal ceroid-lipofuscinosis by immunochemical methods. , 1995, American journal of medical genetics.
[21] Robert W. Taylor,et al. Prevalence of mitochondrial DNA disease in adults , 2008, Annals of neurology.
[22] S. Salamat,et al. Mitochondrial DNA-deletion mutations accumulate intracellularly to detrimental levels in aged human skeletal muscle fibers. , 2006, American journal of human genetics.
[23] Xi Chen,et al. Rearranged mitochondrial genomes are present in human oocytes. , 1995, American journal of human genetics.
[24] N. Hattori,et al. Up-regulation of hMUTYH, a DNA repair enzyme, in the mitochondria of substantia nigra in Parkinson’s disease , 2006, Acta Neuropathologica.
[25] C. van Broeckhoven,et al. Twinkle and POLG defects enhance age-dependent accumulation of mutations in the control region of mtDNA. , 2004, Nucleic acids research.
[26] C. Mothersill,et al. Mitochondrial DNA point mutations and a novel deletion induced by direct low-LET radiation and by medium from irradiated cells. , 2005, Mutation research.
[27] J. Cohen,et al. Mitochondrial DNA rearrangements in human oocytes and embryos. , 1999, Molecular human reproduction.
[28] S. Melov,et al. Mitochondrial disease in mouse results in increased oxidative stress. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[29] J. Haber. Partners and pathwaysrepairing a double-strand break. , 2000, Trends in genetics : TIG.
[30] D. Turnbull,et al. Mitochondrial DNA deletion in “identical” twin brothers , 2004, Journal of Medical Genetics.
[31] D. Turnbull,et al. Nature of mitochondrial DNA deletions in substantia nigra neurons. , 2008, American journal of human genetics.
[32] J. Thacker,et al. A mechanism for deletion formation in DNA by human cell extracts: the involvement of short sequence repeats. , 1992, Nucleic acids research.
[33] K. Smith,et al. Involvement of RecB-mediated (but not RecF-mediated) repair of DNA double-strand breaks in the gamma-radiation production of long deletions in Escherichia coli. , 1992, Mutation research.
[34] L. Nutter,et al. Insensitivity of cultured rat cortical neurons to mitochondrial DNA synthesis inhibitors: evidence for a slow turnover of mitochondrial DNA. , 1997, Biochemical pharmacology.
[35] A. D. de Grey. A proposed refinement of the mitochondrial free radical theory of aging. , 1997, BioEssays : news and reviews in molecular, cellular and developmental biology.
[36] H. Jacobs,et al. Replication of vertebrate mitochondrial DNA entails transient ribonucleotide incorporation throughout the lagging strand , 2006, The EMBO journal.
[37] K. J. Krishnan,et al. The use of a 3895 bp mitochondrial DNA deletion as a marker for sunlight exposure in human skin. , 2004, The Journal of investigative dermatology.
[38] D. A. Clayton,et al. Replication of mitochondrial DNA in mouse L cells and their thymidine kinase - derivatives: displacement replication on a covalently-closed circular template. , 1972, Proceedings of the National Academy of Sciences of the United States of America.
[39] T. Hanekamp,et al. YNT20, a bypass suppressor of yme1 yme2, encodes a putative 3′-5′ exonuclease localized in mitochondria of Saccharomyces cerevisiae , 1999, Current Genetics.
[40] D. Turnbull,et al. Random intracellular drift explains the clonal expansion of mitochondrial DNA mutations with age. , 2001, American journal of human genetics.
[41] H. Jacobs,et al. Coupled Leading- and Lagging-Strand Synthesis of Mammalian Mitochondrial DNA , 2000, Cell.
[42] A. Harding,et al. Deletions of muscle mitochondrial DNA in patients with mitochondrial myopathies , 1988, Nature.
[43] E. Schon,et al. Two direct repeats cause most human mtDNA deletions. , 2004, Trends in genetics : TIG.
[44] P. Ho,et al. Mitochondrial DNA content and 4977 bp deletion in unfertilized oocytes. , 2005, Molecular human reproduction.
[45] D. Barnes,et al. Mutations in the gene encoding the 3′-5′ DNA exonuclease TREX1 cause Aicardi-Goutières syndrome at the AGS1 locus , 2006, Nature Genetics.
[46] C. Broeckhoven,et al. Unusual presentation and clinical variability in Belgian pedigrees with progressive external ophthalmoplegia and multiple deletions of mitochondrial DNA , 1997 .
[47] Robert W. Taylor,et al. High levels of mitochondrial DNA deletions in substantia nigra neurons in aging and Parkinson disease , 2006, Nature Genetics.
[48] H. Jacobs,et al. Mammalian Mitochondrial DNA Replicates Bidirectionally from an Initiation Zone* , 2003, Journal of Biological Chemistry.
[49] I. Nonaka,et al. A mutation in the tRNALeu(UUR) gene associated with the MELAS subgroup of mitochondrial encephalomyopathies , 1990, Nature.
[50] C. Geula,et al. Mitochondrial DNA deletions are abundant and cause functional impairment in aged human substantia nigra neurons , 2006, Nature Genetics.
[51] S. Dimauro,et al. Distribution of wild-type and common deletion forms of mtDNA in normal and respiration-deficient muscle fibers from patients with mitochondrial myopathy. , 1994, Human molecular genetics.