Tabet Fatiha, Cuesta Torres Luisa F, Ong Kwok Leung, Shrestha Sudichhya, Choteau Sébastien A, Barter Philip J, Clifton Peter, Rye Kerry-Anne
Lipid Research Group, School of Medical Sciences, University of New South Wales Australia, Randwick, New South Wales, Australia.
School of Pharmacy and Medical Sciences, Division of Health Sciences, University of South Australia, Adelaide, South Australia, Australia.
PLoS One. 2016 Mar 10;11(3):e0151061. doi: 10.1371/journal.pone.0151061. eCollection 2016.
microRNAs (miRNAs) are small, endogenous non-coding RNAs that regulate metabolic processes, including obesity. The levels of circulating miRNAs are affected by metabolic changes in obesity, as well as in diet-induced weight loss. Circulating miRNAs are transported by high-density lipoproteins (HDL) but the regulation of HDL-associated miRNAs after diet-induced weight loss has not been studied. We aim to determine if HDL-associated miR-16, miR-17, miR-126, miR-222 and miR-223 levels are altered by diet-induced weight loss in overweight and obese males.
HDL were isolated from 47 subjects following 12 weeks weight loss comparing a high protein diet (HP, 30% of energy) with a normal protein diet (NP, 20% of energy). HDL-associated miRNAs (miR-16, miR-17, miR-126, miR-222 and miR-223) at baseline and after 12 weeks of weight loss were quantified by TaqMan miRNA assays. HDL particle sizes were determined by non-denaturing polyacrylamide gradient gel electrophoresis. Serum concentrations of human HDL constituents were measured immunoturbidometrically or enzymatically.
miR-16, miR-17, miR-126, miR-222 and miR-223 were present on HDL from overweight and obese subjects at baseline and after 12 weeks of the HP and NP weight loss diets. The HP diet induced a significant decrease in HDL-associated miR-223 levels (p = 0.015), which positively correlated with changes in body weight (r = 0.488, p = 0.032). Changes in miR-223 levels were not associated to changes in HDL composition or size.
HDL-associated miR-223 levels are significantly decreased after HP diet-induced weight loss in overweight and obese males. This is the first study reporting changes in HDL-associated miRNA levels with diet-induced weight loss.
微小RNA(miRNA)是一类小的内源性非编码RNA,可调节包括肥胖在内的代谢过程。循环miRNA的水平受肥胖以及饮食诱导的体重减轻所导致的代谢变化影响。循环miRNA由高密度脂蛋白(HDL)转运,但饮食诱导体重减轻后HDL相关miRNA的调控尚未得到研究。我们旨在确定超重和肥胖男性中,饮食诱导的体重减轻是否会改变HDL相关的miR-16、miR-17、miR-126、miR-222和miR-223的水平。
从47名受试者中分离HDL,这些受试者在12周的体重减轻后,将高蛋白饮食(HP,能量的30%)与正常蛋白饮食(NP,能量的20%)进行比较。通过TaqMan miRNA检测法定量基线时以及体重减轻12周后的HDL相关miRNA(miR-16、miR-17、miR-126、miR-222和miR-223)。通过非变性聚丙烯酰胺梯度凝胶电泳测定HDL颗粒大小。采用免疫比浊法或酶法测定人HDL成分的血清浓度。
在基线时以及HP和NP减肥饮食12周后,超重和肥胖受试者的HDL上存在miR-16、miR-17、miR-126、miR-222和miR-223。HP饮食导致HDL相关的miR-223水平显著降低(p = 0.015),其与体重变化呈正相关(r = 0.488,p = 0.032)。miR-223水平的变化与HDL组成或大小的变化无关。
超重和肥胖男性在HP饮食诱导体重减轻后,HDL相关的miR-223水平显著降低。这是第一项报道饮食诱导体重减轻后HDL相关miRNA水平变化的研究。