首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Relationship between the coenzyme A and the carnitine pools in human skeletal muscle at rest and after exhaustive exercise under normoxic and acutely hypoxic conditions.
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Relationship between the coenzyme A and the carnitine pools in human skeletal muscle at rest and after exhaustive exercise under normoxic and acutely hypoxic conditions.

机译:在常氧和急性低氧条件下静息和力竭运动后人体骨骼肌中辅酶A与肉碱池之间的关系。

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摘要

Skeletal muscle CoA and carnitine metabolism were investigated in six human volunteers at rest and after exhaustive exercise under normoxic and hypoxic conditions. In comparison to the values at rest, exhaustive exercise was associated with a three- to fourfold increase in the skeletal muscle lactate, and with a twofold increase in the acetyl-CoA content, both under normoxic and hypoxic conditions. Since exercise did not significantly affect the skeletal muscle CoA radical (CoASH), total acid-soluble, or total CoA contents, the increase in the acetyl-CoA content was at the expense of short-chain acyl-CoAs different from acetyl-CoA. With exhaustive exercise, the skeletal muscle acetylcarnitine and short-chain acylcarnitine contents increased by a factor of three to four both under normoxic and hypoxic conditions. In contrast to the CoA pool, these increases were associated with a decrease in the free carnitine content, whereas the total acid-soluble and total carnitine contents were not affected by exercise. After exhaustive exercise, the skeletal muscle acetyl-CoA/CoASH ratio showed a linear correlation with the corresponding acetylcarnitine/free carnitine ratio. The plasma short-chain acylcarnitine concentration increased by a factor of two to three during exercise, and was not significantly different from the values at rest 40 min after completion of exercise. Thus, the current studies illustrate the close interaction between the CoA and carnitine pools in the exercising human skeletal muscle, and they underscore the important role of carnitine in maintaining the muscular CoASH content during exhaustive exercise.
机译:对六名人类志愿者的骨骼肌CoA和肉碱代谢进行了研究,这些志愿者在常氧和低氧条件下休息和进行力竭运动后。与静息状态下的值相比,在常氧和低氧条件下,力竭运动与骨骼肌乳酸含量增加三至四倍,乙酰辅酶A含量增加两倍有关。由于运动不会显着影响骨骼肌CoA自由基(CoASH),总酸溶性或总CoA含量,因此增加乙酰CoA含量的代价是要牺牲与乙酰CoA不同的短链酰基CoA。通过力竭运动,在常氧和低氧条件下,骨骼肌乙酰肉碱和短链酰基肉碱的含量增加了三到四倍。与CoA库相反,这些增加与游离肉碱含量的减少有关,而总酸溶性和总肉碱含量不受运动的影响。力竭运动后,骨骼肌乙酰辅酶A / CoASH比值与相应的乙酰肉碱/游离肉碱比值呈线性关系。血浆短链酰基肉碱浓度在运动过程中增加了2到3倍,与运动完成后40分钟休息时的值无明显差异。因此,当前的研究说明了运动的人体骨骼肌中CoA和肉碱池之间的紧密相互作用,并且它们强调了肉碱在力竭运动期间维持肌肉CoASH含量中的重要作用。

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