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首页> 外文期刊>American Journal of Physiology >Variable penetrance of metabolic phenotypes and development of high-fat diet-induced adiposity in NEIL1-deficient mice
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Variable penetrance of metabolic phenotypes and development of high-fat diet-induced adiposity in NEIL1-deficient mice

机译:可变性渗透性的代谢表型和高脂饮食诱导肥胖在Neil1缺陷小鼠中的发展

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摘要

Exposure to chronic and acute oxidative stress is correlated with many human diseases, including, but not limited to, cancer, heart disease, diabetes, and obesity. In addition to cellular lipids and proteins, cellular oxidative stress can result in damage to DNA bases, especially in mitochondrial DNA. We previously described the development of spontaneous late-onset obesity, hepatic steatosis, hyperinsulinemia, and hyperleptinemia in mice that are deficient in the DNA glycosylase nei-like 1 (NEIL1), which initiates base excision repair of several oxidatively damaged bases. In the current study, we report that exposure to a chronic oxidative stress in the form of a high-fat diet greatly accelerates the development of obesity in neill~(-/-) mice. Following a 5-wk high-fat diet challenge, neill~(-/-) mice gained significantly more body weight than neill~(-/-) littermates and had increased body fat accumulation and moderate to severe hepatic steatosis. Analysis of oxygen consumption by indirect calorimetry indicated a modest reduction in total oxygen consumption in neill~(-/-) mice that was abolished upon correction for lean body mass. Additionally, hepatic expression of several inflammatory genes was significantly upregulated in neill~(-/-) mice following high-fat diet challenge compared with chow-fed or neill~(-/-) counterparts. A long-term high-fat diet also induced glucose intolerance as well as a significant reduction in mitochondrial DNA and protein content in neill~(-/-) mice. Collectively, these data indicate that NEIL1 deficiency results in an increased susceptibility to obesity and related complications potentially by lowering the threshold for tolerance of cellular oxidative
机译:暴露于慢性和急性氧化应激与许多人类疾病相关,包括但不限于癌症,心脏病,糖尿病和肥胖症。除细胞脂质和蛋白质外,细胞氧化应激可能导致DNA碱基损伤,特别是在线粒体DNA中。我们以前描述了在DNA糖基酶Nei样1(Neil1)中缺乏的小鼠的自发晚期肥胖,肝脏脂肪变性,高胰岛素血症和高葡萄糖血症的发展,其引发了几个氧化损坏的基础的基础切除修复。在目前的研究中,我们报告说,暴露于高脂饮食形式的慢性氧化应激极大地加速了Neill〜( - / - )小鼠的肥胖的发展。在5周高脂肪饮食挑战之后,内尔〜(/ - / - )小鼠比内尔〜( - / - )凋落物在体重上获得显着更大,并且体脂积累的体脂积累和中度至严重的肝脏脂肪变性。间接量热法分析氧气消耗表明,在瘦体重校正后废除的内硝〜(/ - / - )小鼠总氧消耗量的适度降低。另外,在高脂肪饮食攻击之后的Neill〜( - / - )小鼠中,肝脏表达在高脂肪饮食攻击中,与Chow Fed或Neizer〜(/ - / - )对应相比,在高脂饮食攻击之后显着上调。长期高脂饮食还诱导葡萄糖不耐受,并且在Neill〜(/ - / - )小鼠中显着降低线粒体DNA和蛋白质含量。总的来说,这些数据表明,Neil1缺乏导致可能通过降低细胞氧化耐受性的阈值来增加对肥胖症和相关并发症的易感性增加

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