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Number matters: control of mammalian mitochondrial DNA copy number

Laura L. Clay Montier Janice J. Deng Yidong Bai

Laura L. Clay Montier, Janice J. Deng, Yidong Bai. Number matters: control of mammalian mitochondrial DNA copy number[J]. Journal of Genetics and Genomics, 2009, 36(3): 125-131. doi: 10.1016/S1673-8527(08)60099-5
Citation: Laura L. Clay Montier, Janice J. Deng, Yidong Bai. Number matters: control of mammalian mitochondrial DNA copy number[J]. Journal of Genetics and Genomics, 2009, 36(3): 125-131. doi: 10.1016/S1673-8527(08)60099-5

doi: 10.1016/S1673-8527(08)60099-5

Number matters: control of mammalian mitochondrial DNA copy number

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  • [1] Attardi, G., Schatz, G. Biogenesis of mitochondria Annu. Rev. Cell Biol., 4 (1988),pp. 289-333
    [2] Bai, R.K., Wong, L.J. Simultaneous detection and quantification of mitochondrial DNA deletion(s), depletion, and over-replication in patients with mitochondrial disease J. Mol. Diagn., 7 (2005),pp. 613-622
    [3] Bai, Y., Shakeley, R.M., Attardi, G. Tight control of respiration by NADH dehydrogenase ND5 subunit gene expression in mouse mitochondria Mol. Cell. Biol., 20 (2000),pp. 805-815
    [4] Barger, P.M., Browning, A.C., Garner, A.N. et al. p38 MAP kinase activates PPARα: A potential role in the cardiac metabolic stress response J. Biol. Chem., 276 (2001),pp. 44495-44501
    [5] Berk, A.J., Clayton, D.A. Mechanism of mitochondrial DNA replication in mouse L-cells: Asynchronous replication of strands, segregation of circular daughter molecules, aspects of topology and turnover of an initiation sequence J. Mol. Biol., 86 (1974),pp. 801-824
    [6] Blokhin, A., Vyshkina, T., Komoly, S. et al. Variations in mitochondrial DNA copy numbers in MS brains J. Mol. Neurosci., 35 (2008),pp. 283-287
    [7] Bogenhagen, D.F., Rousseau, D., Burke, S. The layered structure of human mitochondrial DNA nucleoids J. Biol. Chem., 283 (2008),pp. 3665-3675
    [8] Bogenhagen, D., Clayton, D.A. Mouse L cell mitochondrial DNA molecules are selected randomly for replication throughout the cell cycle Cell, 11 (1977),pp. 719-727
    [9] Bryan, A.C., Rodeheffer, M.S., Wearn, C.M. et al. Genetics, 160 (2002),pp. 75-82
    [10] Cao, L., Shitara, H., Horii, T. et al. The mitochondrial bottleneck occurs without reduction of mtDNA content in female mouse germ cells Nat. Genet., 39 (2007),pp. 386-390
    [11] Choi, Y.S., Kim, S., Pak, Y.K. Mitochondrial transcription factor A (mtTFA) and diabetes Diabetes Res. Clin. Pract., 54 (2001),pp. S3-S9
    [12] Clayton, D.A. Transcription and replication of animal mitochondrial DNAs Int. Rev. Cytol., 141 (1992),pp. 217-232
    [13] Clayton, D.A. Structure and function of the mitochondrial genome J. Inherit. Metab. Dis., 15 (1992),pp. 439-447
    [14] Clayton, D.A. Mitochondrial DNA replication: What we know IUBMB Life, 55 (2003),pp. 213-217
    [15] Dagda, R.K., Zhu, J., Kulich, S.M. et al. Mitochondrially localized ERK2 regulates mitophagy and autophagic cell stress: Implications for Parkinson's disease Autophagy, 4 (2008),pp. 770-782
    [16] Ekstrand, M.I., Falkenberg, M., Rantanen, A. et al. Mitochondrial transcription factor A regulates mtDNA copy number in mammals Hum. Mol. Genetics, 13 (2004),pp. 935-944
    [17] Fan, L., Sanschagrin, P.C., Kaguni, L.S. et al. The accessory subunit of mtDNA polymerase shares structural homology with aminoacyl-tRNA synthetases: Implications for a dual role as a primer recognition factor and processivity clamp Proc. Natl. Acad. Sci. USA, 96 (1999),pp. 9527-9532
    [18] Gérard, M.A., Krol, A., Carbon, P. Gene, 401 (2007),pp. 145-153
    [19] Ghivizzani, S.C., Madsen, C.S., Nelen, M.R. et al. In organello footprint analysis of human mitochondrial DNA: Human mitochondrial transcription factor A interactions at the origin of replication Mol. Cell. Biol., 14 (1994),pp. 7717-7730
    [20] Gilkerson, R.W., Schon, E.A., Hernandez, E. et al. Mitochondrial nucleoids maintain genetic autonomy but allow for functional complementation J. Cell Biol., 181 (2008),pp. 1117-1128
    [21] Gomes, L.C., Scorrano, L. High levels of Fis1, a pro-fission mitochondrial protein, trigger autophagy Biochim. Biophys. Acta, 1777 (2008),pp. 860-866
    [22] Gross, N.J., Getz, G.S., Rabinowitz, M. Apparent turnover of mitochondrial deoxyribonucleic acid and mitochondrial phospholipids in the tissues of the rat J. Biol. Chem., 244 (1969),pp. 1552-1562
    [23] Holt, I.J., Lorimer, H.E., Jacobs, H.T. Coupled leading- and lagging-strand synthesis of mammalian mitochondrial DNA Cell, 100 (2000),pp. 515-524
    [24] Iborra, F.J., Kimura, H., Cook, P.R. The functional organization of mitochondrial genomes in human cells BMC Biol., 2 (2004),p. 9
    [25] Kaguni, L.S. DNA polymerase gamma, the mitochondrial replicase Annu. Rev. Biochem., 73 (2004),pp. 293-320
    [26] Kai, Y., Takamatsu, C., Tokuda, K. et al. Rapid and random turnover of mitochondrial DNA in rat hepatocytes of primary culture Mitochondrion, 6 (2006),pp. 299-304
    [27] Kelly, D.P., Scarpulla, R.C. Transcriptional regulatory circuits controlling mitochondrial biogenesis and function Genes Dev., 18 (2004),pp. 357-368
    [28] Kim, I., Rodriguez-Enriquez, S., Lemasters, J.J. Selective degradation of mitochondria by mitophagy Arch. Biochem. Biophys., 462 (2007),pp. 245-253
    [29] Knutti, D., Kralli, A. PGC-1, a versatile coactivator Trends Endocrinol. Metab., 12 (2001),pp. 360-365
    [30] Korhonen, J.A., Gaspari, M., Falkenberg, M. TWINKLE Has 5′→3′ DNA helicase activity and is specifically stimulated by mitochondrial single-stranded DNA-binding protein J. Biol. Chem., 278 (2003),pp. 48627-48632
    [31] Kunkel, T.A., Soni, A. Exonucleolytic proofreading enhances the fidelity of DNA synthesis by chick embryo DNA polymerase-gamma J. Biol. Chem., 263 (1988),pp. 4450-4459
    [32] Laderman, K.A., Penny, J.R., Mazzucchelli, F. et al. Aging-dependent functional alterations of mitochondrial DNA (mtDNA) from human fibroblasts transferred into mtDNA-less cells J. Biol. Chem., 271 (1996),pp. 15891-15897
    [33] Lehman, J.J., Barger, P.M., Kovacs, A. et al. Peroxisome proliferator-activated receptor gamma coactivator-1 promotes cardiac mitochondrial biogenesis J. Clin. Invest., 106 (2000),pp. 847-856
    [34] Lim, S.E., Longley, M.J., Copeland, W.C. The mitochondrial p55 accessory subunit of human DNA polymerase γ enhances DNA binding, promotes processive DNA synthesis, and confers N-ethylmaleimide resistance JBiol. Chem., 274 (1999),pp. 38197-38203
    [35] Litoshenko, A.Y. Renewal of mitochondrial DNA in the liver of rats of different ages Biull. Eksp. Biol. Med., 97 (1984),pp. 299-301
    [36] Longley, M.J., Prasad, R., Srivastava, D.K. et al. Proc. Natl. Acad. Sci. USA, 95 (1998),pp. 12244-12248
    [37] Macmillan, C.J., Shoubridge, E.A. Mitochondrial DNA depletion: Prevalence in a pediatric population referred for neurologic evaluation Pediatr. Neurol., 14 (1996),pp. 203-210
    [38] Margineantu, D.H., Gregory, Cox, W., Sundell, L. et al. Cell cycle dependent morphology changes and associated mitochondrial DNA redistribution in mitochondria of human cell lines Mitochondrion, 1 (2002),pp. 425-435
    [39] Moraes, C.T. What regulates mitochondrial DNA copy number in animal cells? Trends Genet., 17 (2001),pp. 199-205
    [40] Morten, K.J., Ashley, N., Wijburg, F. et al. Liver mtDNA content increases during development: A comparison of methods and the importance of age- and tissue-specific controls for the diagnosis of mtDNA depletion Mitochondrion, 7 (2007),pp. 386-395
    [41] Nisoli, E., Clementi, E., Paolucci, C. et al. Mitochondrial biogenesis in mammals: The role of endogenous nitric oxide Science, 299 (2003),pp. 896-899
    [42] Olson, M.W., Wang, Y., Elder, R.H. et al. J. Biol. Chem., 270 (1995),pp. 28932-28937
    [43] Pohjoismäki, J.L., Wanrooij, S., Hyvärinen, A.K. et al. Alterations to the expression level of mitochondrial transcription factor A, TFAM, modify the mode of mitochondrial DNA replication in cultured human cells Nucleic Acids Res., 34 (2006),pp. 5815-5828
    [44] Pon, L.A., Vestweber, D., Yang, M. et al. Interaction between mitochondria and the nucleus J. Cell Sci. Suppl., 11 (1989),pp. 1-11
    [45] Puigserver, P., Wu, Z., Park, C.W. et al. A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis Cell, 92 (1998),pp. 829-839
    [46] Rodriguez-Enriquez, S., Kim, I., Currin, R.T. et al. Tracker dyes to probe mitochondrial autophagy (mitophagy) in rat hepatocytes Autophagy, 2 (2006),pp. 39-46
    [47] Saffran, H.A., Pare, J.M., Corcoran, J.A. et al. Herpes simplex virus eliminates host mitochondrial DNA EMBO Rep., 8 (2007),pp. 188-193
    [48] Schon, E.A. Mitochondrial genetics and disease Trends Biochem. Sci., 25 (2000),pp. 555-560
    [49] Tang, Y., Manfredi, G., Hirano, M. et al. Maintenance of human rearranged mitochondrial DNAs in long-term cultured transmitochondrial cell lines Mol. Cell. Biol., 11 (2000),pp. 2349-2358
    [50] Tang, Y., Schon, E.A., Wilichowski, E. et al. Rearrangements of human mitochondrial DNA (mtDNA): New insights into the regulation of mtDNA copy number and gene expression Mol. Cell. Biol., 11 (2000),pp. 1471-1485
    [51] Tiao, M.M., Lin, T.K., Kuo, F.Y. et al. Early stage of biliary atresia is associated with signifcant changes in 8-hydroxydeoxyguanosine and mitochondrial copy number J. Pediatr. Gastroenterol. Nutr., 45 (2007),pp. 329-334
    [52] Virbasius, J.V., Scarpulla, R.C. Activation of the human mitochondrial transcription factor A gene by nuclear respoiratory factors: A potential regulatory link between nuclear and mitochondrial gene expression in organelle biogenesis Proc. Natl. Acad. Sci. USA, 91 (1994),pp. 1309-1313
    [53] Wallace, D.C. Mitochondria as chi Genetics, 179 (2008),pp. 727-735
    [54] Wang, Y., Bogenhagen, D.F. Human mitochondrial DNA nuceloids are linked to protein folding machinery and metabolic enzymes at the mitochondrial inner membrane J. Biol. Chem., 281 (2006),pp. 25791-25802
    [55] Wang, Z., Contey, J., Shadel, G.S. Human mitochondrial ribosomal protein MRPL12 interacts directly with mitochondrial RNA polymerase to modulate mitochondrial gene expression J. Biol. Chem., 282 (2007),pp. 12610-12618
    [56] Weitzel, J.M., Iwen, K.A., Seitz, H.J. Regulation of mitochondrial biogenesis by thyroid hormone Exp. Physiol., 88 (2003),pp. 121-128
    [57] Woldringh, C.L. The role of co-transcriptional translation and protein translocation (transertion) in bacterial chromosome segregation Mol. Microbiol., 45 (2002),pp. 17-29
    [58] Wu, Z., Puigserver, P., Andersson, U. et al. Mechanisms controlling mitochondrial biogenesis and respiration through the thermogenic coactivator PGC-1 Cell, 98 (1999),pp. 115-124
    [59] Xing, J., Chen, M., Wood, C.G. et al. Mitochondrial DNA content: Its genetic heritability and association with renal cell carcinoma J. Natl. Cancer Inst., 100 (2008),pp. 1104-1112
    [60] Yu, M., Zhou, Y., Shi, Y. et al. Reduced mitochondrial DNA copy number is correlated with tumor progression in Chinese breast cancer patients IUBMB Life, 59 (2007),pp. 450-457
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出版历程
  • 收稿日期:  2008-10-10
  • 录用日期:  2009-01-19
  • 修回日期:  2009-01-13
  • 网络出版日期:  2009-03-18
  • 刊出日期:  2009-03-20

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