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Gender-dependent protein expression in white adipose tissues of lean and obese rats fed a high fat diet

机译:高脂饮食对肥胖和肥胖大鼠白色脂肪组织中性别依赖性蛋白表达的影响

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Proper understanding of molecular mechanisms underlying gender dimorphism in obesity for better nutritional recommendation is still in early stages. As white adipose tissues (WAT) is most important tissue in obesity metabolism, comparative proteomic analysis of all three WAT deposits at the same time to yield immensely important protein markers was the primary goal of this study. Methods: We performed differential expression analysis of protein profiles of three different WAT viz. subcutaneous, inguinal, and abdominal fat deposits of both genders in lean and obese rats fed a high fat diet (HFD) using a combination of 2-DE and MALDITOF-MS. Results: The proteomics analysis enabled us to detect 25, 29, and 46 proteins showing gender differences in three WAT deposits, respectively, to gain insight into cause of higher body weight gain in male in response to HFD. Conclusion: The gender dimorphism found in this proteomic study implies that female rats have a lower tendency to undergo metabolic syndrome manifestation, which is associated with lower reliance on lipid as an energy fuel, lower lipogenesis, as well as increased mitochondrial oxidative capacity. In conclusion, most of the candidate proteins identified herein by differential proteomics were previously unrecognized in gender dimorphism of adipose tissue.
机译:肥胖中对性别二态性潜在的分子机制的正确理解尚需早期营养。由于白色脂肪组织(WAT)是肥胖代谢中最重要的组织,因此对这三种WAT沉积物同时进行比较蛋白质组学分析以产生极为重要的蛋白质标记是本研究的主要目标。方法:我们对三种不同WAT的蛋白质谱进行了差异表达分析。使用2-DE和MALDITOF-MS组合喂养高脂饮食(HFD)的瘦和肥胖大鼠中的两种性别的皮下,腹股沟和腹部脂肪沉积。结果:蛋白质组学分析使我们能够检测到25种,29种和46种蛋白质,分别显示出三种WAT沉积物中的性别差异,从而深入了解了男性因HFD引起体重增加的原因。结论:蛋白质组学研究中发现的性别差异表明雌性大鼠发生代谢综合征的趋势较低,这与较低的脂质作为能量燃料的依赖,较低的脂肪生成以及线粒体的氧化能力增加有关。总之,本文先前通过差异蛋白质组学鉴定的大多数候选蛋白质在脂肪组织的性别二态性中以前未被识别。

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