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Effect of temperature on fatty acid metabolism in skeletal muscle mitochondria of untrained and endurance-trained rats

机译:温度对未经训练和耐力训练的大鼠骨骼肌线粒体脂肪酸代谢的影响

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摘要

We studied the effects of various assay temperatures, representing hypothermia (25°C), normothermia (35°C), and hyperthermia (42°C), on the oxidation of lipid-derived fuels in rat skeletal muscle mitochondria of untrained and endurance-trained rats. Adult 4-month-old male Wistar rats were assigned to a training group (rats trained on a treadmill for 8 weeks) or a sedentary control group. In skeletal muscle mitochondria of both control and trained rats, an increase in the assay temperature from 25°C to 42°C was accompanied by a consistent increase in the oxidation of palmitoylcarnitine and glycerol-3-phosphate. Moreover, endurance training increased mitochondrial capacity to oxidize the lipid-derived fuels at all studied temperatures. The endurance training-induced increase in mitochondrial capacity to oxidize fatty acids was accompanied by an enhancement of mitochondrial biogenesis, as shown by the elevated expression levels of Nrf2, PGC1α, and mitochondrial marker and by the elevated expression levels of mitochondrial proteins involved in fatty acid metabolism, such as fatty acid transporter CD36, carnitine palmitoyltransferase 1A (CPT1A), and acyl-CoA dehydrogenase (ACADS). We conclude that hyperthermia enhances but hypothermia attenuates the rate of the oxidation of fatty acids and glycerol-3-phosphate in rat skeletal muscle mitochondria isolated from both untrained and trained rats. Moreover, our results indicate that endurance training up-regulates mitochondrial biogenesis markers, lipid-sustained oxidative capacity, and CD36 and CPT1A proteins involved in fatty acid transport, possibly via PGC1α and Nrf2 signaling pathways.
机译:我们研究了代表低温(25°C),体温正常(35°C)和体温过高(42°C)的各种测定温度对未经训练和耐力强的大鼠骨骼肌线粒体中脂质衍生燃料氧化的影响受过训练的大鼠。将成年的4个月大的雄性Wistar大鼠分为训练组(在跑步机上训练8周的大鼠)或久坐的对照组。在对照和训练大鼠的骨骼肌线粒体中,测定温度从25°C升高至42°C,同时棕榈酰肉碱和3-磷酸甘油的氧化持续增加。此外,在所有研究温度下,耐力训练都增加了线粒体氧化脂质衍生燃料的能力。 Nrf2,PGC1α和线粒体标志物的表达水平升高以及与脂肪酸有关的线粒体蛋白的表达水平升高表明,耐力训练诱导的线粒体氧化脂肪酸能力的增强伴随着线粒体生物发生的增强。代谢,例如脂肪酸转运蛋白CD36,肉碱棕榈酰转移酶1A(CPT1A)和酰基辅酶A脱氢酶(ACADS)。我们得出的结论是,高温会增强,而低温会使从未经训练和经过训练的大鼠中分离出的大鼠骨骼肌线粒体中脂肪酸和3-磷酸甘油的氧化速率降低。此外,我们的结果表明,耐力训练可能通过PGC1α和Nrf2信号通路上调了线粒体生物发生标记,脂质维持的氧化能力以及参与脂肪酸转运的CD36和CPT1A蛋白。

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