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Metabolic reprogramming involving glycolysis in the hibernating brown bear skeletal muscle

机译:冬眠棕熊骨骼肌中涉及糖酵解的代谢重编程

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摘要

BackgroundIn mammals, the hibernating state is characterized by biochemical adjustments, which include metabolic rate depression and a shift in the primary fuel oxidized from carbohydrates to lipids. A number of studies of hibernating species report an upregulation of the levels and/or activity of lipid oxidizing enzymes in muscles during torpor, with a concomitant downregulation for glycolytic enzymes. However, other studies provide contrasting data about the regulation of fuel utilization in skeletal muscles during hibernation. Bears hibernate with only moderate hypothermia but with a drop in metabolic rate down to ~ 25% of basal metabolism. To gain insights into how fuel metabolism is regulated in hibernating bear skeletal muscles, we examined the vastus lateralis proteome and other changes elicited in brown bears during hibernation.
机译:背景技术在哺乳动物中,冬眠状态的特征在于生化调节,包括代谢率降低和主要燃料从碳水化合物氧化为脂质的转变。冬眠物种的许多研究报告称,在躯干期间肌肉中脂质氧化酶的水平和/或活性上调,同时糖酵解酶也随之下调。但是,其他研究则提供了有关冬眠期间骨骼肌燃料利用调节的对比数据。熊冬眠时只有中等程度的体温过低,但代谢率下降到基础代谢的约25%。为了深入了解冬眠的熊骨骼肌肉中燃料代谢的调控方式,我们研究了冬眠时棕熊外侧肌蛋白质组和棕熊引起的其他变化。

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