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耐力训练增强骨骼肌氧化酶的意义。

Significance of skeletal muscle oxidative enzyme enhancement with endurance training.

作者信息

Gollnick P D, Saltin B

出版信息

Clin Physiol. 1982 Feb;2(1):1-12. doi: 10.1111/j.1475-097x.1982.tb00001.x.

Abstract

A theoretical model is proposed to explain how the increase in mitochondrial protein concentration, and therefore of the oxidative enzymes, that occurs with endurance training could operate to alter the choice of substrate during submaximal exercise in a manner such that the oxidation of fatty acids increases, glycogen depletion and lactate production are reduced, and work capacity is enhanced. The model is based on the control of enzyme activities both by enzyme and substrate concentrations. The effect of altering enzyme concentration on reaction velocities is presented on the basis of standard Henri-Michaelis-Menten kinetics. It is shown that the reaction velocity at a given substrate concentration is a function of total enzyme concentration. With an increase in total enzyme concentration there is a parallel increase in reaction velocity at the same substrate level. This would have its greatest impact at substrate levels below the Km of the enzyme. It would have an effect of enhancing fatty acid flux through the oxidative pathways while inhibiting the Embden-Meyerhof pathway. The model, as proposed, is consistent with known alterations in metabolism as they occur in man during submaximal exercise following endurance training.

摘要

提出了一个理论模型来解释耐力训练导致的线粒体蛋白浓度增加以及氧化酶增加是如何在次最大运动中改变底物选择的,即脂肪酸氧化增加、糖原消耗和乳酸生成减少,工作能力增强。该模型基于酶浓度和底物浓度对酶活性的控制。根据标准的亨利 - 米氏动力学,阐述了改变酶浓度对反应速度的影响。结果表明,在给定底物浓度下的反应速度是总酶浓度的函数。随着总酶浓度的增加,在相同底物水平下反应速度会平行增加。这在低于酶Km值的底物水平上影响最大。它会增强脂肪酸通过氧化途径的通量,同时抑制糖酵解途径。所提出的模型与耐力训练后人体在次最大运动中发生的已知代谢变化一致。

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