首页> 外文期刊>Oncology reports >A novel chemopreventive mechanism of selenomethionine: Enhancement of APE1 enzyme activity via a Gadd45a, PCNA and APE1 protein complex that regulates p53-mediated base excision repair
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A novel chemopreventive mechanism of selenomethionine: Enhancement of APE1 enzyme activity via a Gadd45a, PCNA and APE1 protein complex that regulates p53-mediated base excision repair

机译:硒代蛋氨酸的新型化学预防机制:通过调节p53介导的碱基切除修复的Gadd45a,PCNA和APE1蛋白复合物增强APE1酶的活性

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Organic selenium compounds have been documented to play a role in cancer prevention. Our previous study showed that selenomethionine (SeMet) induces p53 activation without genotoxic effects including apoptosis and cell cycle arrest. In this study, we investigated the mechanism by which organic selenium compounds promote p53-mediated base excision repair (BER) activity. Our data demonstrated for the first time that the interaction between growth arrest and DNA damage-inducible protein 45A (Gadd45a), which is a p53-activated downstream gene, and two BER-mediated repair proteins, proliferating cell nuclear antigen (PCNA) and apurinic/apyrimidinic endonuclease (APE1/Ref-1), was significantly increased in a p53-dependent manner following treatment with organic selenium compounds. Furthermore, we observed that the activity of APE1 was significantly increased in a p53-dependent manner in response to the organic selenium compounds. These results suggest that BER activity is dependent on wild-type p53 activity and is mediated by the modulation of protein interactions between Gadd45a and repair proteins in response to organic selenium compounds. We propose that p53-dependent BER activity is a distinct chemopreventive mechanism mediated by organic selenium compounds, and that this may provide insight into the development of effective chemopreventive strategies against various oxidative stresses that contribute to a variety of human diseases, particularly cancer.
机译:有机硒化合物已被证明在预防癌症中起作用。我们以前的研究表明,硒代蛋氨酸(SeMet)诱导p53激活而没有遗传毒性作用,包括凋亡和细胞周期停滞。在这项研究中,我们调查了有机硒化合物促进p53介导的碱基切除修复(BER)活性的机制。我们的数据首次证明了生长停滞与DNA损伤诱导蛋白45A(Gadd45a)之间的相互作用,后者是p53激活的下游基因,还与两种BER介导的修复蛋白,增殖性细胞核抗原(PCNA)和紫质蛋白相互作用。用有机硒化合物处理后,β-嘧啶核苷内切酶(APE1 / Ref-1)以p53依赖性方式显着增加。此外,我们观察到,响应于有机硒化合物,APE1的活性以p53依赖性方式显着增加。这些结果表明,BER活性取决于野生型p53活性,并受Gadd45a和修复蛋白对有机硒化合物的响应而调节蛋白相互作用的介导。我们建议依赖p53的BER活性是由有机硒化合物介导的独特的化学预防机制,并且这可以提供对有效的化学预防策略的发展的认识,该策略针对各种导致多种人类疾病(尤其是癌症)的氧化应激。

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