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Unchanged thymidine triphosphate pools and thymidine metabolism in two lines of thymidine kinase 2-mutated fibroblasts
被引:12
作者:
Frangini, Miriam
[1
]
Rampazzo, Chiara
[1
]
Franzolin, Elisa
[1
]
Lara, Mari-Carmen
[2
]
Vila, Maya R.
[2
]
Marti, Ramon
[2
]
Bianchi, Vera
[1
]
机构:
[1] Univ Padua, Dept Biol, I-35131 Padua, Italy
[2] Univ Vall Hebron, Inst Recerca Hosp, Barcelona, Spain
关键词:
dTTP pool turnover;
mitochondrial DNA depletion syndrome;
mitochondrial DNA precursors;
p53R2;
thymidine phosphorylase;
MITOCHONDRIAL-DNA DEPLETION;
NEUROGASTROINTESTINAL ENCEPHALOMYOPATHY;
TK2;
DEFICIENCY;
DEOXYNUCLEOTIDE POOLS;
DEOXYGUANOSINE KINASE;
MTDNA DEPLETION;
CELL-EXTRACTS;
MYOPATHY;
5'-NUCLEOTIDASES;
MUTATIONS;
D O I:
10.1111/j.1742-4658.2008.06853.x
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Mitochondrial thymidine kinase (TK2) catalyzes the phosphorylation of thymidine in mitochondria. Its function becomes essential for dTTP synthesis in noncycling cells, where cytosolic dTTP synthesis via R1/R2 ribonucleotide reductase and thymidine kinase 1 is turned down. Mutations in the nuclear gene for TK2 cause a fatal mtDNA depletion syndrome. Only selected cell types are affected, suggesting that the other cells compensate for the TK2 deficiency by adapting the enzyme network that regulates dTTP synthesis outside S-phase. Here we looked for such metabolic adaptation in quiescent cultures of fibroblasts from two TK2-deficient patients with a slow-progressing syndrome. In cell extracts, we measured the activities of TK2, deoxycytidine kinase, thymidine phosphorylase, deoxynucleotidases and the amounts of the three ribonucleotide reductase subunits. Patient cells contained 40% or 5% TK2 activity and unchanged activities of the other enzymes. However, their mitochondrial and cytosolic dTTP pools were unchanged, and also the overall composition of the dNTP pools was normal. TK2-dependent phosphorylation of [H-3]thymidine in intact cells and the turnover of the dTTP pool showed that even the fibroblasts with 5% residual TK2 activity synthesized dTTP at an almost normal rate. Normal fibroblasts apparently contain more TK2 than needed to maintain dTTP during quiescence, which would explain why TK2-mutated fibroblasts do not manifest mtDNA depletion despite their reduced TK2 activity.
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页码:1104 / 1113
页数:10
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