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首页> 外文期刊>Lipids in Health Disease >Leptin gene promoter DNA methylation in WNIN obese mutant rats
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Leptin gene promoter DNA methylation in WNIN obese mutant rats

机译:WNIN肥胖突变型大鼠的瘦素基因启动子DNA甲基化

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Background Obesity has become an epidemic in worldwide population. Leptin gene defect could be one of the causes for obesity. Two mutant obese rats WNIN/Ob and WNIN/GROb, isolated at National Centre for Laboratory Animal Sciences (NCLAS), Hyderabad, India, were found to be leptin resistant. The present study aims to understand the regulatory mechanisms underlying the resistance by promoter DNA methylation of leptin gene in these mutant obese rats. Methods Male obese mutant homozygous, carrier and heterozygous rats of WNIN/Ob and WNIN/GROb strain of 6 months old were studied to check the leptin gene expression (RT-PCR) and promoter DNA methylation (MassARRAY Compact system, SEQUENOM) of leptin gene by invivo and insilico approach. Results Homozygous WNIN/Ob and WNIN/GROb showed significantly higher leptin gene expression compared to carrier and lean counterparts. Leptin gene promoter DNA sequence region was analyzed ranging from transcription start site (TSS) to-550 bp length and found four CpGs in this sequence among them only three CpG loci (-309, -481, -502) were methylated in these WNIN mutant rat phenotypes. Conclusion The increased percentage of methylation in WNIN mutant lean and carrier phenotypes is positively correlated with transcription levels. Thus genetic variation may have effect on methylation percentages and subsequently on the regulation of leptin gene expression which may lead to obesity in these obese mutant rat strains.
机译:背景技术肥胖症已成为全世界人口的流行病。瘦素基因缺陷可能是肥胖的原因之一。在印度海得拉巴国家实验动物科学中心(NCLAS)分离的两只突变型肥胖大鼠WNIN / Ob和WNIN / GROb被发现对瘦蛋白具有抗性。本研究旨在了解在这些突变型肥胖大鼠中瘦素基因的启动子DNA甲基化引起的耐药性的调控机制。方法研究6个月大的WNIN / Ob和WNIN / GROb菌株的雄性肥胖突变型纯合子,携带者和杂合子大鼠,检查瘦素基因的瘦素基因表达(RT-PCR)和启动子DNA甲基化(MassARRAY Compact system,SEQUENOM)通过invivo和insilico方法。结果纯合子WNIN / Ob和WNIN / GROb的瘦素基因表达水平明显高于携带者和瘦者。分析了瘦素基因启动子的DNA序列区域,其范围从转录起始位点(TSS)到-550 bp长,发现该序列中有四个CpG,其中只有三个CpG基因座(-309,-481,-502)被甲基化大鼠表型。结论WNIN突变体瘦型和携带者表型的甲基化百分比增加与转录水平呈正相关。因此,遗传变异可能会影响甲基化百分比,进而影响瘦素基因表达的调节,从而导致这些肥胖突变大鼠品系肥胖。

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