The mitochondrial toxicity of nucleoside reverse transcriptase inhibitors (NRTIs) is due to the inhibition of mitochondrial DNA (mtDNA) polymerase γ (pol γ). Previous studies have shown that wild type p53 (wtp53) can interact with pol γ and mtDNA to enhance mitochondrial DNA base excision repair (mtBER) activity and increase the accuracy of DNA synthesis. The N-terminal transactivation domain and central specific DNA-binding domain of p53 play critical roles in the stimulation of BER. In this study, we identified the possible roles of wtp53, Î40p53 and Î133p53 in regulating mtDNA pol γ activity in cells with d4T treatment. The results show that Î40p53 and Î133p53 can exist in mitochondrial fragments and form polymers with themselves or wtp53. Unlike wtP53, Î133p53 alone cannot increase DNA pol γ activity. More importantly, we found that Î133p53 played a negative role in p53 stimulation of DNA pol γ activity when studied in d4T-treated and d4T-untreated mitochondrial extracts. Gel shift data also indicate that Î40p53 and Î133p53 cannot interact with APE. Wtp53 and Î40p53 can act antagonize the effect of d4T inhibition of DNA pol γ activity. However, when wtp53 interacted with Î133p53, DNA pol γ activity was significantly decreased. CONCLUSION: Î133p53 negatively regulates p53's stimulation of pol γ in the presence and absence of d4T.
The Î133p53 Isoform Reduces Wtp53-induced Stimulation of DNA Pol γ Activity in the Presence and Absence of D4T.
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作者:Liu Kai, Zang Yunjin, Guo Xianghua, Wei Feili, Yin Jiming, Pang Lijun, Chen Dexi
| 期刊: | Aging and Disease | 影响因子: | 6.900 |
| 时间: | 2017 | 起止号: | 2017 Apr 1; 8(2):228-239 |
| doi: | 10.14336/AD.2016.0910 | ||
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