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首页> 外文期刊>Proceedings of the Nutrition Society >The role of uncoupling protein 3 in fatty acid metabolism: protection against lipotoxicity?
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The role of uncoupling protein 3 in fatty acid metabolism: protection against lipotoxicity?

机译:解偶联蛋白3在脂肪酸代谢中的作用:预防脂毒性?

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摘要

The physiological function of the mitochondrial uncoupling protein (UCP), UCP3, is still under debate. There is, however, ample evidence to indicate that, in contrast to UCP1, the primary function of UCP3 is not the dissipation of energy. Rather, several lines of evidence suggest that UCP3 is associated with cellular fatty acid metabolism. The highest levels of expression of UCP3 have been found in type 2 glycolytic muscle fibres, and fasting and high-fat diets up regulate UCP3. This up-regulation is most pronounced in muscle with a low fat oxidative capacity. Acute exercise also up regulates UCP3, and this effect has been shown to be a result of the exercise-induced increase in plasma fatty acid levels. In contrast, regular physical activity, which increases fat oxidative capacity, reduces UCP3 content. Based on these data it has been postulated that UCP3 functions to export those fatty acids that cannot be oxidized from the mitochondrial matrix, in order to prevent fatty acid accumulation inside the matrix. Several experiments have been conducted to test this hypothesis. Blocking carnitine palmitoyl-transferase 1, thereby reducing fat oxidative capacity, rapidly induces UCP3. High-fat diets, which increase the mitochondrial supply of fatty acids, also up regulate UCP. However, feeding a similar amount of medium-chain fatty acids, which can be oxidized inside the mitochondrial matrix and therefore do not need to be exported from the matrix, does not affect UCP3 protein levels. In addition, UCP3 is increased in patients with defective beta-oxidation and is reduced after restoring oxidative capacity. In conclusion, it is suggested that UCP3 has an important physiological function in facilitating outward transport from the mitochondrial matrix of fatty acid anions that cannot be oxidized, thereby protecting against lipid-induced mitochondrial damage.
机译:线粒体解偶联蛋白(UCP)UCP3的生理功能仍在争论中。但是,有足够的证据表明,与UCP1相比,UCP3的主要功能不是耗能。相反,几条证据表明UCP3与细胞脂肪酸代谢有关。在2型糖酵解性肌纤维中发现了UCP3的最高表达水平,而禁食和高脂饮食可以调节UCP3。这种上调在具有低脂肪氧化能力的肌肉中最为明显。急性运动也会上调UCP3,这种作用已被证明是运动引起的血浆脂肪酸水平增加的结果。相反,增加脂肪氧化能力的常规体育活动会降低UCP3含量。根据这些数据,推测UCP3的作用是从线粒体基质中输出那些无法被氧化的脂肪酸,以防止脂肪酸在基质中积累。已经进行了一些实验来检验该假设。阻断肉碱棕榈酰转移酶1,从而降低脂肪的氧化能力,迅速诱导UCP3。高脂饮食增加了线粒体脂肪酸的供应,也上调了UCP。但是,喂入可在线粒体基质内部被氧化且因此无需从基质中输出的类似数量的中链脂肪酸,不会影响UCP3蛋白水平。此外,UCP3在β-氧化缺陷的患者中增加,在恢复氧化能力后降低。总之,建议UCP3在促进无法被氧化的脂肪酸阴离子从线粒体基质向外运输方面具有重要的生理功能,从而防止脂质诱导的线粒体损伤。

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