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大鼠骨骼肌纤维中的氧化能力分布

Oxidative capacity distribution in skeletal muscle fibers of the rat.

作者信息

Philippi M, Sillau A H

机构信息

Department of Physiology and Biophysics, School of Medicine, University of Puerto Rico, San Juan 00936.

出版信息

J Exp Biol. 1994 Apr;189:1-11. doi: 10.1242/jeb.189.1.1.

Abstract

To study the distribution of oxidative capacity in muscle fibers, mitochondrial volume density and the oxidative capacity of isolated mitochondria were evaluated. Mitochondria were isolated from the subsarcolemmal and interfibrillar areas of the soleus (a muscle largely made up of slow oxidative fibers) and the gastrocnemius medial head (a muscle largely made up of fast glycolytic fibers) of the rat, and their oxidative capacities were evaluated using NADH- and FADH-generating substrates. In the soleus muscle, the subsarcolemmal mitochondria showed a lower oxidative capacity than interfibrillar mitochondria when NADH-generating substrates were used. This difference was not observed when FADH-generating substrates were used. In the gastrocnemius, there were no differences in the oxidative capacity of the subsarcolemmal and the interfibrillar mitochondria. Additionally, citrate synthase activity was found to be lower in mitochondria isolated from the subsarcolemmal area of the soleus than in the other mitochondrial preparations. These findings indicate that the difference in oxidative capacity of the isolated mitochondria is not related to differences in the inner mitochondrial membranes. Mitochondrial volume density was evaluated using electron micrographs of the subsarcolemmal and interfibrillar areas of slow oxidative fibers from the soleus and fast glycolytic fibers from the gastrocnemius. In the slow oxidative fibers, mitochondrial volume density in the subsarcolemmal area was four times higher than in the interfibrillar area. In the fast glycolytic fibers, mitochondrial volume densities in the subsarcolemmal and interfibrillar areas did not differ from that of the interfibrillar area of the slow oxidative fibers. The oxidative capacity of the tissue, calculated by multiplying the mitochondrial oxidative capacities by the mitochondrial volume densities, was 2-4 times higher in the subsarcolemmal areas of the soleus fibers than in the other areas studied. This was true in spite of the fact that the oxidative capacity of the subsarcolemmal mitochondria of the slow oxidative fibers was lower than those of the other mitochondrial populations studied. These results indicate that the difference in oxidative capacity between slow oxidative fibers and fast glycolytic fibers is the result of the much greater mitochondrial volume density in the subsarcolemmal area of the slow oxidative fibers.

摘要

为研究肌纤维中氧化能力的分布,对线粒体体积密度和分离出线粒体的氧化能力进行了评估。从大鼠比目鱼肌(主要由慢氧化纤维组成的肌肉)和腓肠肌内侧头(主要由快糖酵解纤维组成的肌肉)的肌膜下和肌原纤维间区域分离出线粒体,并使用产生NADH和FADH的底物评估其氧化能力。在比目鱼肌中,当使用产生NADH的底物时,肌膜下线粒体的氧化能力低于肌原纤维间线粒体。使用产生FADH的底物时未观察到这种差异。在腓肠肌中,肌膜下和肌原纤维间线粒体的氧化能力没有差异。此外,发现从比目鱼肌肌膜下区域分离的线粒体中柠檬酸合酶活性低于其他线粒体制剂。这些发现表明,分离出线粒体氧化能力的差异与线粒体内膜的差异无关。使用比目鱼肌慢氧化纤维和腓肠肌快糖酵解纤维的肌膜下和肌原纤维间区域的电子显微镜照片评估线粒体体积密度。在慢氧化纤维中,肌膜下区域的线粒体体积密度比肌原纤维间区域高四倍。在快糖酵解纤维中,肌膜下和肌原纤维间区域的线粒体体积密度与慢氧化纤维的肌原纤维间区域没有差异。通过将线粒体氧化能力乘以线粒体体积密度计算得出的组织氧化能力,在比目鱼肌纤维的肌膜下区域比其他研究区域高2至4倍。尽管慢氧化纤维的肌膜下线粒体的氧化能力低于所研究的其他线粒体群体,但情况仍然如此。这些结果表明,慢氧化纤维和快糖酵解纤维之间氧化能力的差异是慢氧化纤维肌膜下区域线粒体体积密度大得多的结果。

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