Literature DB >> 13679382

Deoxyribonucleotide pool imbalance stimulates deletions in HeLa cell mitochondrial DNA.

Shiwei Song1, Linda J Wheeler, Christopher K Mathews.   

Abstract

Mitochondrial neurogastrointestinal encephalomyopathy (MNGIE) is an autosomal recessive disorder associated with multiple mutations in mitochondrial DNA, both deletions and point mutations, and mutations in the nuclear gene for thymidine phosphorylase. Spinazzola et al. (Spinazzola, A., Marti, R., Nishino, I., Andreu, A., Naini, A., Tadesse, S., Pela, I., Zammarchi, E., Donati, M., Oliver, J., and Hirano, M. (2001) J. Biol. Chem. 277, 4128-4133) showed that MNGIE patients have elevated circulating thymidine levels and they hypothesized that this generates imbalanced mitochondrial deoxyribonucleoside triphosphate (dNTP) pools, which in turn are responsible for mitochondrial (mt) DNA mutagenesis. We tested this hypothesis by culturing HeLa cells in medium supplemented with 50 microM thymidine. After 8-month growth, mtDNA in the thymidine-treated culture, but not the control, showed multiple deletions, as detected both by Southern blotting and by long extension polymerase chain reaction. After 4-h growth in thymidine-supplemented medium, we found the mitochondrial dTTP and dGTP pools to expand significantly, the dCTP pool to drop significantly, and the dATP pool to drop slightly. In whole-cell extracts, dTTP and dGTP pools also expanded, but somewhat less than in mitochondria. The dCTP pool shrank by about 50%, and the dATP pool was essentially unchanged. These results are discussed in terms of the recent report by Nishigaki et al. (Nishigaki, Y., Marti, R., Copeland, W. C., and Hirano, M. (2003) J. Clin. Invest. 111, 1913-1921) that most mitochondrial point mutations in MNGIE patients involve T --> C transitions in sequences containing two As to the 5' side of a T residue. Our finding of dTTP and dGTP elevations and dATP depletion in mitochondrial dNTP pools are consistent with a mutagenic mechanism involving T-G mispairing followed by a next-nucleotide effect involving T insertion opposite A.

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Year:  2003        PMID: 13679382     DOI: 10.1074/jbc.C300401200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  49 in total

1.  Structure-guided engineering of human thymidine kinase 2 as a positron emission tomography reporter gene for enhanced phosphorylation of non-natural thymidine analog reporter probe.

Authors:  Dean O Campbell; Shahriar S Yaghoubi; Ying Su; Jason T Lee; Martin S Auerbach; Harvey Herschman; Nagichettiar Satyamurthy; Johannes Czernin; Arnon Lavie; Caius G Radu
Journal:  J Biol Chem       Date:  2011-11-09       Impact factor: 5.157

Review 2.  CoQ(10) deficiencies and MNGIE: two treatable mitochondrial disorders.

Authors:  Michio Hirano; Caterina Garone; Catarina M Quinzii
Journal:  Biochim Biophys Acta       Date:  2012-01-18

3.  3'-Azido-3'-deoxythymidine (AZT) is a competitive inhibitor of thymidine phosphorylation in isolated rat heart and liver mitochondria.

Authors:  Matthew D Lynx; Edward E McKee
Journal:  Biochem Pharmacol       Date:  2006-04-25       Impact factor: 5.858

Review 4.  Inherited mitochondrial diseases of DNA replication.

Authors:  William C Copeland
Journal:  Annu Rev Med       Date:  2008       Impact factor: 13.739

5.  Evidence for mutation showers.

Authors:  Jicheng Wang; Kelly D Gonzalez; William A Scaringe; Kimberly Tsai; Ning Liu; Dongqing Gu; Wenyan Li; Kathleen A Hill; Steve S Sommer
Journal:  Proc Natl Acad Sci U S A       Date:  2007-05-07       Impact factor: 11.205

Review 6.  Deoxyribonucleotides as genetic and metabolic regulators.

Authors:  Christopher K Mathews
Journal:  FASEB J       Date:  2014-06-13       Impact factor: 5.191

7.  Direct role of nucleotide metabolism in C-MYC-dependent proliferation of melanoma cells.

Authors:  Sudha Mannava; Vladimir Grachtchouk; Linda J Wheeler; Michael Im; Dazhong Zhuang; Elena G Slavina; Christopher K Mathews; Donna S Shewach; Mikhail A Nikiforov
Journal:  Cell Cycle       Date:  2008-06-03       Impact factor: 4.534

8.  Gastrointestinal dysmotility in mitochondrial neurogastrointestinal encephalomyopathy is caused by mitochondrial DNA depletion.

Authors:  Carla Giordano; Mariangela Sebastiani; Roberto De Giorgio; Claudia Travaglini; Andrea Tancredi; Maria Lucia Valentino; Marzio Bellan; Andrea Cossarizza; Michio Hirano; Giulia d'Amati; Valerio Carelli
Journal:  Am J Pathol       Date:  2008-09-11       Impact factor: 4.307

9.  Novel DNA mismatch-repair activity involving YB-1 in human mitochondria.

Authors:  Nadja C de Souza-Pinto; Penelope A Mason; Kazunari Hashiguchi; Lior Weissman; Jingyan Tian; David Guay; Michel Lebel; Tinna V Stevnsner; Lene Juel Rasmussen; Vilhelm A Bohr
Journal:  DNA Repair (Amst)       Date:  2009-03-09

10.  Whole-genome mutational landscape and characterization of noncoding and structural mutations in liver cancer.

Authors:  Akihiro Fujimoto; Mayuko Furuta; Yasushi Totoki; Tatsuhiko Tsunoda; Mamoru Kato; Yuichi Shiraishi; Hiroko Tanaka; Hiroaki Taniguchi; Yoshiiku Kawakami; Masaki Ueno; Kunihito Gotoh; Shun-Ichi Ariizumi; Christopher P Wardell; Shinya Hayami; Toru Nakamura; Hiroshi Aikata; Koji Arihiro; Keith A Boroevich; Tetsuo Abe; Kaoru Nakano; Kazuhiro Maejima; Aya Sasaki-Oku; Ayako Ohsawa; Tetsuo Shibuya; Hiromi Nakamura; Natsuko Hama; Fumie Hosoda; Yasuhito Arai; Shoko Ohashi; Tomoko Urushidate; Genta Nagae; Shogo Yamamoto; Hiroki Ueda; Kenji Tatsuno; Hidenori Ojima; Nobuyoshi Hiraoka; Takuji Okusaka; Michiaki Kubo; Shigeru Marubashi; Terumasa Yamada; Satoshi Hirano; Masakazu Yamamoto; Hideki Ohdan; Kazuaki Shimada; Osamu Ishikawa; Hiroki Yamaue; Kazuki Chayama; Satoru Miyano; Hiroyuki Aburatani; Tatsuhiro Shibata; Hidewaki Nakagawa
Journal:  Nat Genet       Date:  2016-04-11       Impact factor: 38.330

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