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Resistance to high-fat diet-induced obesity in male heterozygous Pprc1 knockout mice

机译:对雄性杂合Pprc1基因敲除小鼠对高脂饮食诱导的肥胖的抵抗

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References(41) Peroxisome proliferator-activated receptor gamma, co-activator-related 1 (Pprc1) is the third member of the Pgc1 family. Other than the well-characterized Pgc1a and Pgc1b that act as regulators of mitochondrial biogenesis and oxidative metabolism, the function of Pprc1 in vivo is rarely reported, due to embryonic lethality of whole-body Pprc1 knockout mice. To investigate the biological and physiological function of Pprc1 in metabolic processes, male Pprc1+/- mice fed with a high fat diet (HFD) showed resistance to diet-induced obesity with a decrease of adipose tissue in Pprc1+/- mice, which was a result of elevated energy expenditure. In skeletal muscle of Pprc1+/- mice, Pprc1 level showed haplo-insufficiency with down-regulation of Pgc1b and Pgc1a, whereas in adipose tissue, Pprc1 expression remained normal, with significant compensatory increase of other Pgc1 family members to induce an up-regulation of respiratory chain genes. Taken together, as the first report on the metabolic roles of Pprc1 in vivo, these results indicated an elevated basal metabolic rate and lipid metabolic alteration of male Pprc1+/- mice on HFD, suggesting the significant role of Pprc1 in controlling mitochondrial gene expression and energy metabolic processes, synergistically with Pgc1a and Pgc1b.
机译:参考文献(41)过氧化物酶体增殖物激活受体γ,与激活因子相关的1(Pprc1)是Pgc1家族的第三个成员。除了表征良好的Pgc1a和Pgc1b作为线粒体生物发生和氧化代谢的调节剂外,由于全身Pprc1敲除小鼠的胚胎致死性,很少有人报道Pprc1在体内的功能。为了研究Pprc1在代谢过程中的生物学和生理功能,高脂饮食(HFD)喂养的雄性Pprc1 +/-小鼠表现出对饮食诱发的肥胖的抵抗力,Pprc1 +/-小鼠的脂肪组织减少,这是结果能源支出增加。在Pprc1 +/-小鼠的骨骼肌中,Pprc1水平显示出单倍功能不全,同时下调了Pgc1b和Pgc1a,而在脂肪组织中,Pprc1表达保持正常,其他Pgc1家族成员的代偿性明显增加,从而诱导了Pprc1 +/-小鼠的上调。呼吸链基因。两者合计,作为关于Pprc1在体内代谢作用的第一份报告,这些结果表明雄性Pprc1 +/-小鼠在HFD上的基础代谢率升高和脂质代谢改变,表明Pprc1在控制线粒体基因表达和能量中的重要作用代谢过程,与Pgc1a和Pgc1b协同作用。

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