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首页> 外文期刊>The Journal of Experimental Biology >Skeletal muscle fuel selection occurs at the mitochondrial level
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Skeletal muscle fuel selection occurs at the mitochondrial level

机译:骨骼肌燃料选择发生在线粒体水平

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Mammals exponentially increase the rate of carbohydrate oxidation as exercise intensity rises, while birds combust lipid almost exclusively while flying at high percentages of aerobic capacity. The fuel oxidized by contracting muscle depends on many factors: whole-body fuel storage mass, mobilization, blood transport, cellular uptake, and substrate selection at the level of the mitochondrion. We examined the fuel preferences of mitochondria isolated from mammalian and avian locomotory muscles using two approaches. First, the influence of substrates on the kinetics of respiration (K-m,K-ADP and V-max) was evaluated. For all substrates and combinations, K-m,K-ADP was generally twofold higher in avian mitochondria. Second, fuel competition between pyruvate, glutamate and/or palmitoyl-L-carnitine at three levels of ATP free energy was determined using the principle of mass balance and the measured rates of O-2 consumption and metabolite accumulation/utilization. Avian mitochondria strongly spared pyruvate from oxidation when another substrate was available and fatty acid was the dominant substrate, regardless of energy state. Mammalian mitochondria exhibited some preference for fatty acid over pyruvate at lower flux (higher energy state), but exhibited a much greater tendency to select pyruvate and glutamate when available. Studies in sonicated mitochondria revealed twofold higher electron transport chain electron conductance in avian mitochondria. We conclude that substantial fuel selection occurs at the level of the mitochondrial matrix and that avian flight muscle mitochondria are particularly biased toward the selection of fatty acid, possibly by facilitating high beta-oxidation flux by maintaining a more oxidized matrix
机译:随着运动强度的增加,哺乳动物成倍地增加了碳水化合物的氧化速率,而鸟类则以高比例的有氧能力飞行时几乎只燃烧脂质。收缩肌肉所氧化的燃料取决于许多因素:全身燃料存储质量,动员,血液运输,细胞吸收以及线粒体水平的底物选择。我们使用两种方法检查了从哺乳动物和禽类运动肌肉分离出的线粒体的燃料偏好。首先,评估了底物对呼吸动力学(K-m,K-ADP和V-max)的影响。对于所有底物及其组合,禽线粒体中的K-m,K-ADP通常高两倍。其次,使用质量平衡原理以及测得的O-2消耗率和代谢物积聚/利用率,确定了丙酮酸,谷氨酸和/或棕榈酰-L-肉碱在三水平的ATP自由能之间的燃料竞争。当可利用另一种底物且脂肪酸为主要底物时,无论能量状态如何,禽线粒体均能使丙酮酸免受氧化。哺乳动物的线粒体在较低的通量(较高的能量状态)下比丙酮酸显示出对脂肪酸的某种偏爱,但在可用时显示出更大的选择丙酮酸和谷氨酸的趋势。对声波线粒体的研究表明,禽线粒体的电子传输链电子电导率高两倍。我们得出结论,大量的燃料选择发生在线粒体基质的水平,禽类飞行肌线粒体特别偏向于脂肪酸的选择,这可能是通过维持较高的氧化基质来促进高β-氧化通量

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