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Mechanisms of formation and accumulation of mitochondrial DNA deletions in aging neurons.

Fukui H, Moraes CT.

Hum Mol Genet. 2009 Mar 15;18(6):1028-36. doi: 10.1093/hmg/ddn437. Epub 2008 Dec 18.


Mitochondrial genome maintenance: roles for nuclear nonhomologous end-joining proteins in Saccharomyces cerevisiae.

Kalifa L, Quintana DF, Schiraldi LK, Phadnis N, Coles GL, Sia RA, Sia EA.

Genetics. 2012 Mar;190(3):951-64. doi: 10.1534/genetics.111.138214. Epub 2012 Jan 3.


The striatum is highly susceptible to mitochondrial oxidative phosphorylation dysfunctions.

Pickrell AM, Fukui H, Wang X, Pinto M, Moraes CT.

J Neurosci. 2011 Jul 6;31(27):9895-904. doi: 10.1523/JNEUROSCI.6223-10.2011.


Striatal dysfunctions associated with mitochondrial DNA damage in dopaminergic neurons in a mouse model of Parkinson's disease.

Pickrell AM, Pinto M, Hida A, Moraes CT.

J Neurosci. 2011 Nov 30;31(48):17649-58. doi: 10.1523/JNEUROSCI.4871-11.2011.


Transient systemic mtDNA damage leads to muscle wasting by reducing the satellite cell pool.

Wang X, Pickrell AM, Rossi SG, Pinto M, Dillon LM, Hida A, Rotundo RL, Moraes CT.

Hum Mol Genet. 2013 Oct 1;22(19):3976-86. doi: 10.1093/hmg/ddt251. Epub 2013 Jun 10.


Intra- and inter-molecular recombination of mitochondrial DNA after in vivo induction of multiple double-strand breaks.

Bacman SR, Williams SL, Moraes CT.

Nucleic Acids Res. 2009 Jul;37(13):4218-26. doi: 10.1093/nar/gkp348. Epub 2009 May 12.


Accumulation of mitochondrial DNA deletions within dopaminergic neurons triggers neuroprotective mechanisms.

Perier C, Bender A, García-Arumí E, Melià MJ, Bové J, Laub C, Klopstock T, Elstner M, Mounsey RB, Teismann P, Prolla T, Andreu AL, Vila M.

Brain. 2013 Aug;136(Pt 8):2369-78. doi: 10.1093/brain/awt196.


Catecholamine metabolism drives generation of mitochondrial DNA deletions in dopaminergic neurons.

Neuhaus JF, Baris OR, Hess S, Moser N, Schröder H, Chinta SJ, Andersen JK, Kloppenburg P, Wiesner RJ.

Brain. 2014 Feb;137(Pt 2):354-65. doi: 10.1093/brain/awt291. Epub 2013 Oct 24.


Non-homologous end-joining for repairing I-SceI-induced DNA double strand breaks in human cells.

Honma M, Sakuraba M, Koizumi T, Takashima Y, Sakamoto H, Hayashi M.

DNA Repair (Amst). 2007 Jun 1;6(6):781-8. Epub 2007 Feb 12.


Human mitochondrial DNA with large deletions repopulates organelles faster than full-length genomes under relaxed copy number control.

Diaz F, Bayona-Bafaluy MP, Rana M, Mora M, Hao H, Moraes CT.

Nucleic Acids Res. 2002 Nov 1;30(21):4626-33.


Din7 and Mhr1 expression levels regulate double-strand-break-induced replication and recombination of mtDNA at ori5 in yeast.

Ling F, Hori A, Yoshitani A, Niu R, Yoshida M, Shibata T.

Nucleic Acids Res. 2013 Jun;41(11):5799-816. doi: 10.1093/nar/gkt273. Epub 2013 Apr 17.


Mutant mitochondrial helicase Twinkle causes multiple mtDNA deletions and a late-onset mitochondrial disease in mice.

Tyynismaa H, Mjosund KP, Wanrooij S, Lappalainen I, Ylikallio E, Jalanko A, Spelbrink JN, Paetau A, Suomalainen A.

Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17687-92. Epub 2005 Nov 21.


Lack of mitochondrial DNA deletions in lesions of multiple sclerosis.

Blokhin A, Vyshkina T, Komoly S, Kalman B.

Neuromolecular Med. 2008;10(3):187-94. doi: 10.1007/s12017-008-8025-2.


In vivo interaction between mitochondria carrying mtDNAs from different mouse species.

Sato A, Nakada K, Shitara H, Yonekawa H, Hayashi J.

Genetics. 2004 Aug;167(4):1855-61.


Mitochondrial transcription factor A overexpression and base excision repair deficiency in the inner ear of rats with D-galactose-induced aging.

Zhong Y, Hu YJ, Chen B, Peng W, Sun Y, Yang Y, Zhao XY, Fan GR, Huang X, Kong WJ.

FEBS J. 2011 Jul;278(14):2500-10. doi: 10.1111/j.1742-4658.2011.08176.x. Epub 2011 Jun 5.


Distinct roles of XRCC4 and Ku80 in non-homologous end-joining of endonuclease- and ionizing radiation-induced DNA double-strand breaks.

Schulte-Uentrop L, El-Awady RA, Schliecker L, Willers H, Dahm-Daphi J.

Nucleic Acids Res. 2008 May;36(8):2561-9. doi: 10.1093/nar/gkn094. Epub 2008 Mar 10.

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