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瘦素受体缺失雄性大鼠的体力活动、能量消耗和体重防御。

Physical Activity, Energy Expenditure, and Defense of Body Weight in Melanocortin 4 Receptor-Deficient Male Rats.

机构信息

College of Agriculture and Veterinary Medicine, Al-Qassim University, Buraydah, Al-Qassim Province, Saudi Arabia.

Department of Biological Sciences, Kent State University, Kent, OH, 44242, US.

出版信息

Sci Rep. 2016 Nov 25;6:37435. doi: 10.1038/srep37435.

Abstract

Melanocortin 4 receptor (MC4R) variants contribute to human obesity, and rats lacking functional MC4R (Mc4r) are obese. We investigated the hypothesis that low energy expenditure (EE) and physical activity contribute to this obese phenotype in male rats, and determined whether lack of functional MC4R conferred protection from weight loss during 50% calorie restriction. Though Mc4r rats showed low brown adipose Ucp1 expression and were less physically active than rats heterozygous for the mutation (Mc4r) or wild-type (Mc4r) rats, we found no evidence of lowered EE in Mc4r rats once body weight was taken into account using covariance. Mc4r rats had a significantly higher respiratory exchange ratio. Compared to Mc4r rats, Mc4r and Mc4r rats lost less lean mass during calorie restriction, and less body mass when baseline weight was accounted for. Limited regional overexpression of Mc3r was found in the hypothalamus. Although lower physical activity levels in rats with nonfunctional MC4R did not result in lower total EE during free-fed conditions, rats lacking one or two functional copies of Mc4r showed conservation of mass, particularly lean mass, during energy restriction. This suggests that variants affecting MC4R function may contribute to individual differences in the metabolic response to food restriction.

摘要

黑素皮质素 4 受体 (MC4R) 变体与人类肥胖有关,缺乏功能性 MC4R (Mc4r) 的大鼠肥胖。我们假设低能量消耗 (EE) 和体力活动导致雄性大鼠表现出肥胖表型,并确定缺乏功能性 MC4R 是否能在 50%热量限制期间防止体重减轻。尽管 Mc4r 大鼠的棕色脂肪 Ucp1 表达较低,且比突变杂合子 (Mc4r) 或野生型 (Mc4r) 大鼠的体力活动少,但我们发现,一旦考虑到体重的影响,用协方差分析,Mc4r 大鼠的 EE 并没有降低。Mc4r 大鼠的呼吸交换率明显较高。与 Mc4r 大鼠相比,在热量限制期间,Mc4r 和 Mc4r 大鼠的瘦体重损失较少,而在考虑到基线体重时,体质量损失较少。在下丘脑发现 Mc3r 的区域过表达有限。尽管缺乏功能性 MC4R 的大鼠在自由喂养条件下的体力活动水平较低,不会导致总 EE 降低,但缺乏一个或两个功能性 Mc4r 拷贝的大鼠在能量限制期间保持体重,特别是瘦体重。这表明,影响 MC4R 功能的变体可能导致个体对食物限制的代谢反应存在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e32/5122857/b168a07fb711/srep37435-f1.jpg

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