Publications
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“A Cu/Zn superoxide dismutase from Jatropha curcas enhances salt tolerance of Arabidopsis thaliana”, vol. 14, pp. 2086-2098, 2015.
, “Diagnostic values of microRNA-31 in peripheral blood mononuclear cells for pediatric pulmonary tuberculosis in Chinese patients”, vol. 14, pp. 17235-17243, 2015.
, “Complete sequence analysis of mitochondrial DNA of aplastic anemia patients”, vol. 11, pp. 2130-2137, 2012.
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http://dx.doi.org/10.1038/13779
PMid:10508508
Bohr VA, Stevnsner T and de Souza-Pinto NC (2002). Mitochondrial DNA repair of oxidative damage in mammalian cells. Gene 286: 127-134.
http://dx.doi.org/10.1016/S0378-1119(01)00813-7
Chen D, Cao G, Hastings T, Feng Y, et al. (2002). Age-dependent decline of DNA repair activity for oxidative lesions in rat brain mitochondria. J. Neurochem. 81: 1273-1284.
http://dx.doi.org/10.1046/j.1471-4159.2002.00916.x
PMid:12068075
Chinnery PF and Schon EA (2003). Mitochondria. J. Neurol. Neurosurg. Psychiatr. 74: 1188-1199.
http://dx.doi.org/10.1136/jnnp.74.9.1188
PMid:12933917 PMCid:1738655
Clayton DA (1984). Transcription of the mammalian mitochondrial genome. Annu. Rev. Biochem. 53: 573-594.
http://dx.doi.org/10.1146/annurev.bi.53.070184.003041
PMid:6383200
DiMauro S and Schon EA (2003). Mitochondrial respiratory-chain diseases. N. Engl. J. Med. 348: 2656-2668.
http://dx.doi.org/10.1056/NEJMra022567
PMid:12826641
Gattermann N (2000). From sideroblastic anemia to the role of mitochondrial DNA mutations in myelodysplastic syndromes. Leuk. Res. 24: 141-151.
http://dx.doi.org/10.1016/S0145-2126(99)00160-5
Gattermann N (2004). Mitochondrial DNA mutations in the hematopoietic system. Leukemia 18: 18-22.
http://dx.doi.org/10.1038/sj.leu.2403209
PMid:14614516
Grist SA, Lu XJ and Morley AA (2004). Mitochondrial mutations in acute leukaemia. Leukemia 18: 1313-1316.
http://dx.doi.org/10.1038/sj.leu.2403380
PMid:15129223
Hatfill SJ, La Cock CJ, Laubscher R, Downing TG, et al. (1993). A role for mitochondrial DNA in the pathogenesis of radiation-induced myelodysplasia and secondary leukemia. Leuk. Res. 17: 907-913.
http://dx.doi.org/10.1016/0145-2126(93)90036-K
Lee MS and Levin BC (2002). MitoAnalyzer, a computer program and interactive web site to determine the effects of single nucleotide polymorphisms and mutations in human mitochondrial DNA. Mitochondrion 1: 321-326.
http://dx.doi.org/10.1016/S1567-7249(01)00031-9
Linnartz B, Anglmayer R and Zanssen S (2004). Comprehensive scanning of somatic mitochondrial DNA alterations in acute leukemia developing from myelodysplastic syndromes. Cancer Res. 64: 1966-1971.
http://dx.doi.org/10.1158/0008-5472.CAN-03-2956
PMid:15026331
Penta JS, Johnson FM, Wachsman JT and Copeland WC (2001). Mitochondrial DNA in human malignancy. Mutat. Res. 488: 119-133.
http://dx.doi.org/10.1016/S1383-5742(01)00053-9
Richter C, Park JW and Ames BN (1988). Normal oxidative damage to mitochondrial and nuclear DNA is extensive. Proc. Natl. Acad. Sci. U. S. A. 85: 6465-6467.
http://dx.doi.org/10.1073/pnas.85.17.6465
PMid:3413108 PMCid:281993
Shadel GS and Clayton DA (1997). Mitochondrial DNA maintenance in vertebrates. Annu. Rev. Biochem. 66: 409-435.
http://dx.doi.org/10.1146/annurev.biochem.66.1.409
PMid:9242913
Shin MG, Kajigaya S, Levin BC and Young NS (2003). Mitochondrial DNA mutations in patients with myelodysplastic syndromes. Blood 101: 3118-3125.
http://dx.doi.org/10.1182/blood-2002-06-1825
PMid:12446454
Suganuma K, Miwa H, Imai N, Shikami M, et al. (2010). Energy metabolism of leukemia cells: glycolysis versus oxidative phosphorylation. Leuk. Lymphoma 51: 2112-2119.
http://dx.doi.org/10.3109/10428194.2010.512966
PMid:20860495
Wulfert M, Kupper AC, Tapprich C, Bottomley SS, et al. (2008). Analysis of mitochondrial DNA in 104 patients with myelodysplastic syndromes. Exp. Hematol. 36: 577-586.
http://dx.doi.org/10.1016/j.exphem.2008.01.004
PMid:18439489