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氧与底物代谢途径的设计。III. 碳水化合物能量供应的分配

Design of the oxygen and substrate pathways. III. Partitioning energy provision from carbohydrates.

作者信息

Weber J M, Roberts T J, Vock R, Weibel E R, Taylor C R

机构信息

Museum of Comparative Zoology, Harvard University, Cambridge, MA 02138, USA.

出版信息

J Exp Biol. 1996 Aug;199(Pt 8):1659-66. doi: 10.1242/jeb.199.8.1659.

Abstract

This paper quantifies maximal fluxes through the pathway supplying carbohydrates to the mitochondria of muscle cells. Continuous infusions of D-[3-(3)H]glucose together with indirect calorimetry were used to investigate the partitioning of the supply of carbohydrates through the two branches of the pathway: from circulating glucose and from glycogen stores within the muscle cells to the mitochondria. The relative contribution of circulating glucose to total carbohydrate oxidation was small, accounting for only 13% and 23% of the carbohydrate oxidized at exercise intensities approaching MO2max in dogs and goats, respectively. Unexpectedly, maximal rates of circulating glucose oxidation were nearly the same in the two species (when expressed in absolute terms; dog:goat ratio = 1.2), despite the 2.2-fold difference in aerobic capacity. We conclude that the glycogen stores in the muscle cells are the major source of substrates at maximal rates of oxidation, supplying 60-70% of the total energy. Furthermore, it is this branch of the carbohydrate pathway that is adapted to the large difference in aerobic capacity between dogs and goats.

摘要

本文对肌肉细胞中向线粒体供应碳水化合物的途径中的最大通量进行了量化。通过持续输注D-[3-(3)H]葡萄糖并结合间接量热法,研究碳水化合物供应通过该途径的两个分支的分配情况:从循环葡萄糖以及从肌肉细胞内的糖原储备到线粒体。循环葡萄糖对总碳水化合物氧化的相对贡献较小,在狗和山羊接近最大摄氧量(MO2max)的运动强度下,分别仅占氧化的碳水化合物的13%和23%。出乎意料的是,尽管有氧能力相差2.2倍,但两个物种中循环葡萄糖氧化的最大速率几乎相同(以绝对值表示时;狗:山羊的比率 = 1.2)。我们得出结论,肌肉细胞中的糖原储备是最大氧化速率下底物的主要来源,提供总能量的60 - 70%。此外,正是碳水化合物途径的这一分支适应了狗和山羊之间有氧能力的巨大差异。

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