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Redox and epigenetic regulation of the APE1 gene in the hippocampus of piglets: The effect of early life exposures

机译:仔猪海马APE1基因的氧化还原和表观遗传调节:早期曝光效果

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摘要

Oxidative stress via redox reactions can regulate DNA repair pathways. The base excision repair (BER) enzyme apurinic/apyrimidinic endonuclease 1 (APE1) is a key player in the redox regulation of DNA repair. Environmental factors can alter the methylation of DNA repair genes, change their expression and thus modulate BER activity and susceptibility to oxidative DNA damage. Therefore, we hypothesized that epigenetic modifications play a role in the redox regulation oiAPEl in hippocampi of newborns and investigated the effect of supplementation of pregnant sows with a diet enriched in antioxidants and other nutrients on oxidative stress, DNA methylation and DNA repair in their offspring. High levels of8-oxo-7,8-dihydro-2'-deoxyguanosine (8-oxodG) and low levels of glutathione were detected in control piglets after birth compared with supplemented piglets, indicating the presence of oxidative stress. In control animals, this oxidative stress was associated with genomic DNA demethylation, decreased APE1 promoter methylation, increased APE1 expression and with slightly but not statistically significant increased BER-related DNA incision activity. Supplementation of piglets with antioxidants and other nutrients significantly lowered 8-oxodG levels compared to control animals, which was accompanied by overall lower APE1 promoter methylation and enhanced APE1 expression at day 7-28 after birth in supplemented piglets, although DNA incision activity was not significantly different between groups. Preliminary attempts to study the interaction between redox and epigenetic regulatory mechanisms revealed an inverse correlation between APE1 expression and methylation of CpG-sites 11 and 13 in the promoter region, which according to Genomatix "Matlnspector" are located in the core binding sites of redox-sensitive transcription factors. We are the first to study methylation of the APE1 promoter and its role in mediating the functional effects of redox reactions induced by oxidative stress. Epigenetic and redox mechanisms may interact in regulating APE1 -related DNA repair processes, involving redox-sensitive TFs.
机译:通过氧化还原反应氧化应激可以调节DNA修复途径。基本切除修复(BER)酶膜膜膜膜1(APE1)是DNA修复的氧化还原调控中的关键球员。环境因素可以改变DNA修复基因的甲基化,改变它们的表达,从而调节BER活性和对氧化DNA损伤的敏感性。因此,我们假设表观遗传修饰在新生儿海马的氧化还原调控OIAPel中发挥作用,并研究了脂肪母猪补充剂对抗氧化剂和其他营养成分的饮食的影响,对其后代的氧化应激,DNA甲基化和DNA修复。与补充仔猪相比,在出生后,在对照仔猪后检测到高水平的8-氧代-7,8-二氢-2'-脱氧核苷酸(8- exodg)和低水平的谷胱甘肽,表明存在氧化应激。在对照动物中,该氧化应激与基因组DNA去甲基化有关,降低APE1启动子甲基化,增加APE1表达,略微但没有统计学上显着的BER相关的DNA切口活性。与对照动物相比,用抗氧化剂和其他营养素的仔猪和其他营养素的补充显着降低了8-氧代毒素水平,其伴随着在第7-28天在第7-28天伴随的仔猪后的总体降低APE1启动子甲基化和增强的APE1表达,尽管DNA切口活性没有显着群体之间的不同。研究氧化还原和表观遗传调节机制之间的相互作用的初步尝试揭示了APE1表达和CpG - 位点11和13的甲基化与启动子区的甲基化之间的反比异性,这根据基因组织“MATLNSPOPTOR”位于氧化还原的核心结合位点。敏感转录因子。我们是第一个研究APE1启动子的甲基化及其在介导氧化胁迫诱导的氧化还原反应的功能作用中的作用。表观遗传和氧化还原机制可用于调节APE1相关的DNA修复过程,涉及氧化还原敏感的TFS。

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