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New insights concerning the role of carnitine in the regulation of fuel metabolism in skeletal muscle

机译:关于肉碱在骨骼肌燃料代谢调节中的作用的新见解

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摘要

In skeletal muscle, carnitine plays an essential role in the translocation of long-chain fatty-acids into the mitochondrial matrix for subsequent β-oxidation, and in the regulation of the mitochondrial acetyl-CoA/CoASH ratio. Interest in these vital metabolic roles of carnitine in skeletal muscle appears to have waned over the past 25 years. However, recent research has shed new light on the importance of carnitine as a regulator of muscle fuel selection. It has been established that muscle free carnitine availability may be limiting to fat oxidation during high intensity submaximal exercise. Furthermore, increasing muscle total carnitine content in resting healthy humans (via insulin-mediated stimulation of muscle carnitine transport) reduces muscle glycolysis, increases glycogen storage and is accompanied by an apparent increase in fat oxidation. By increasing muscle pyruvate dehydrogenase complex (PDC) activity and acetylcarnitine content at rest, it has also been established that PDC flux and acetyl group availability limits aerobic ATP re-synthesis at the onset of exercise (the acetyl group deficit). Thus, carnitine plays a vital role in the regulation of muscle fuel metabolism. The demonstration that its availability can be readily manipulated in humans, and impacts on physiological function, will result in renewed business and scientific interest in this compound.
机译:在骨骼肌中,肉碱在长链脂肪酸转入线粒体基质以进行随后的β氧化以及线粒体乙酰辅酶A / CoASH比例的调节中起着至关重要的作用。在过去的25年中,人们对肉碱在骨骼肌中这些重要的代谢作用的兴趣逐渐减弱。但是,最近的研究揭示了肉碱作为肌肉燃料选择调节剂的重要性。已经确定,在高强度次最大运动中,无肌肉的肉碱可用性可能限制脂肪氧化。此外,增加静息健康人的肌肉总肉碱含量(通过胰岛素介导的肌肉肉碱转运刺激)可减少肌肉糖酵解,增加糖原储存并伴有脂肪氧化的明显增加。通过增加静止状态下的肌肉丙酮酸脱氢酶复合物(PDC)活性和乙酰肉碱含量,还确定了PDC通量和乙酰基可用性限制了运动开始时有氧ATP的重新合成(乙酰基缺乏)。因此,肉碱在调节肌肉燃料代谢中起着至关重要的作用。证明其可用性很容易在人类中操纵,并影响其生理功能的论证将导致对该化合物的重新商业和科学兴趣。

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