短期高脂饮食对幼鼠氧化型和糖酵解型骨骼肌线粒体呼吸、活性氧生成及动力学的影响。
The impact of a short-term high-fat diet on mitochondrial respiration, reactive oxygen species production, and dynamics in oxidative and glycolytic skeletal muscles of young rats.
作者信息
Leduc-Gaudet Jean-Philippe, Reynaud Olivier, Chabot François, Mercier Jocelyne, Andrich David E, St-Pierre David H, Gouspillou Gilles
机构信息
Département des Sciences de l'activité physique, Faculté des Sciences, UQAM, Montréal, Canada.
Groupe de recherche en Activité Physique Adaptée, Montréal, Canada.
出版信息
Physiol Rep. 2018 Feb;6(4). doi: 10.14814/phy2.13548.
Multiple aspects of mitochondrial function and dynamics remain poorly studied in the skeletal muscle of pediatric models in response to a short-term high-fat diet (HFD). This study investigated the impact of a short-term HFD on mitochondrial function and dynamics in the oxidative soleus (SOL) and glycolytic extensor digitorum longus (EDL) muscles in young rats. Young male Wistar rats were submitted to either HFD or normal chow (NCD) diets for 14 days. Permeabilized myofibers from SOL and EDL were prepared to assess mitochondrial respiration and reactive oxygen species (ROS) production. The expression and content of protein involved in mitochondrial metabolism and dynamics (fusion/fission) were also quantified. While no effects of HFD was observed on mitochondrial respiration when classical complex I and II substrates were used, both SOL and EDL of rats submitted to a HFD displayed higher basal and ADP-stimulated respiration rates when Malate + Palmitoyl-L-carnitine were used as substrates. HFD did not alter ROS production and markers of mitochondrial content. The expression of CPT1b was significantly increased in SOL and EDL of HFD rats. Although the expression of UCP3 was increased in SOL and EDL muscles from HFD rats, mitochondrial coupling efficiency was not altered. In SOL of HFD rats, the transcript levels of Mfn2 and Fis1 were significantly upregulated. The expression and content of proteins regulating mitochondrial dynamics was not modulated by HFD in the EDL. Finally, DRP1 protein content was increased by over fourfold in the SOL of HFD rats. Taken altogether, our findings show that exposing young animals to short-term HFD results in an increased capacity of skeletal muscle mitochondria to oxidize fatty acids, without altering ROS production, coupling efficiency, and mitochondrial content. Our results also highlight that the impact of HFD on mitochondrial dynamics appears to be muscle specific.
在儿科模型的骨骼肌中,针对短期高脂饮食(HFD),线粒体功能和动力学的多个方面仍未得到充分研究。本研究调查了短期HFD对幼鼠氧化型比目鱼肌(SOL)和糖酵解型趾长伸肌(EDL)中线粒体功能和动力学的影响。将年轻雄性Wistar大鼠分为两组,分别给予HFD或正常饮食(NCD)14天。制备来自SOL和EDL的透化肌纤维,以评估线粒体呼吸和活性氧(ROS)生成。还对参与线粒体代谢和动力学(融合/裂变)的蛋白质的表达和含量进行了定量分析。当使用经典的复合体I和II底物时,未观察到HFD对线粒体呼吸有影响,但当使用苹果酸 + 棕榈酰 - L - 肉碱作为底物时,接受HFD的大鼠的SOL和EDL均表现出更高的基础呼吸速率和ADP刺激的呼吸速率。HFD未改变ROS生成和线粒体含量标志物。HFD大鼠的SOL和EDL中CPT1b的表达显著增加。尽管HFD大鼠的SOL和EDL肌肉中UCP3的表达增加,但线粒体偶联效率未改变。在HFD大鼠的SOL中,Mfn2和Fis1的转录水平显著上调。HFD未调节EDL中调节线粒体动力学的蛋白质的表达和含量。最后,HFD大鼠的SOL中DRP1蛋白含量增加了四倍多。综上所述,我们的研究结果表明,使幼年动物暴露于短期HFD会导致骨骼肌线粒体氧化脂肪酸的能力增强,而不会改变ROS生成、偶联效率和线粒体含量。我们的结果还强调,HFD对线粒体动力学的影响似乎具有肌肉特异性。