Variable penetrance of metabolic phenotypes and development of high-fat diet-induced adiposity in NEIL1-deficient mice

被引:43
|
作者
Sampath, Harini [1 ]
Batra, Ayesha K. [2 ]
Vartanian, Vladimir [1 ]
Carmical, J. Russ [3 ]
Prusak, Deborah [3 ]
King, Irena B. [4 ]
Lowell, Brian [1 ]
Earley, Lauriel F. [1 ]
Wood, Thomas G. [3 ]
Marks, Daniel L. [2 ]
McCullough, Amanda K. [1 ]
Lloyd, R. Stephen [1 ]
机构
[1] Oregon Hlth & Sci Univ, Dept Mol & Med Genet, Ctr Res Occupat & Environm Toxicol, Portland, OR 97239 USA
[2] Oregon Hlth & Sci Univ, Dept Pediat, Portland, OR 97239 USA
[3] Univ Texas Med Branch, Dept Biochem & Mol Biol, Galveston, TX USA
[4] Univ New Mexico, Div Epidemiol, Albuquerque, NM 87131 USA
关键词
nei-like; 1; oxidative stress; base excision repair; metabolic syndrome; mitochondrial DNA; MITOCHONDRIAL-DNA DELETIONS; OXIDATIVELY DAMAGED DNA; BASE-EXCISION-REPAIR; INSULIN-RESISTANCE; NEIL1; DNA; GENE-EXPRESSION; HUMAN-DISEASE; COPY NUMBER; GLYCOSYLASE; OBESITY;
D O I
10.1152/ajpendo.00387.2010
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Sampath H, Batra AK, Vartanian V, Carmical JR, Prusak D, King IB, Lowell B, Earley LF, Wood TG, Marks DL, McCullough AK, Lloyd RS. Variable penetrance of metabolic phenotypes and development of high-fat diet-induced adiposity in NEIL1-deficient mice. Am J Physiol Endocrinol Metab 300: E724-E734, 2011. First published February 1, 2011; doi: 10.1152/ajpendo. 00387.2010.-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 neil1(-/-) mice. Following a 5-wk high-fat diet challenge, neil1(-/-) mice gained significantly more body weight than neil1(-/-) 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 neil1(-/-) mice that was abolished upon correction for lean body mass. Additionally, hepatic expression of several inflammatory genes was significantly upregulated in neil1(-/-) mice following high-fat diet challenge compared with chow-fed or neil1(-/-) counterparts. A long-term high-fat diet also induced glucose intolerance as well as a significant reduction in mitochondrial DNA and protein content in neil1(-/-) 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 stress in neil1(-/-) mice.
引用
收藏
页码:E724 / E734
页数:11
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