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A Creatine-Driven Substrate Cycle Enhances Energy Expenditure and Thermogenesis in Beige Fat

机译:肌酸驱动的底物循环增强了米色脂肪的能量消耗和生热作用

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摘要

Thermogenic brown and beige adipose tissues dissipate chemical energy as heat, and their thermogenic activities can combat obesity and diabetes. Herein the functional adaptations to cold of brown and beige adipose depots are examined using quantitative mitochondrial proteomics. We identify arginine/creatine metabolism as a beige adipose signature and demonstrate that creatine enhances respiration in beige-fat mitochondria when ADP is limiting. In murine beige fat, cold exposure stimulates mitochondrial creatine kinase activity and induces coordinated expression of genes associated with creatine metabolism. Pharmacological reduction of creatine levels decreases whole-body energy expenditure after administration of a beta 3-agonist and reduces beige and brown adipose metabolic rate. Genes of creatine metabolism are compensatorily induced when UCP1-dependent thermogenesis is ablated, and creatine reduction in Ucp1-deficient mice reduces core body temperature. These findings link a futile cycle of creatine metabolism to adipose tissue energy expenditure and thermal homeostasis.
机译:产热的棕色和米色脂肪组织会随着热量散发化学能,它们的产热活动可以抵抗肥胖和糖尿病。本文使用定量线粒体蛋白质组学研究了棕色和米色脂肪库对寒冷的功能适应性。我们确定精氨酸/肌酸代谢为米色的脂肪签名,并证明当ADP受到限制时,肌酸会增强米色脂肪线粒体中的呼吸作用。在鼠类米色脂肪中,冷暴露会刺激线粒体肌酸激酶活性,并诱导与肌酸代谢相关的基因的协调表达。药理学上的肌酸水平降低会降低β3受体激动剂给药后的全身能量消耗,并降低米色和棕色脂肪代谢率。当依赖UCP1的生热被消融时,肌酸代谢的基因被补偿性诱导,而缺乏Ucp1的小鼠中肌酸的减少降低了核心体温。这些发现将无效的肌酸代谢循环与脂肪组织能量消耗和热稳态联系起来。

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