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不同年龄大鼠和犬骨骼肌、心脏及肝脏线粒体电子传递活性的变化

Changes in skeletal muscle, heart and liver mitochondrial electron transport activities in rats and dogs of various ages.

作者信息

Sugiyama S, Takasawa M, Hayakawa M, Ozawa T

机构信息

Department of Biomedical Chemistry, Faculty of Medicine, University of Nagoya, Japan.

出版信息

Biochem Mol Biol Int. 1993 Aug;30(5):937-44.

PMID:8220242
Abstract

We determined skeletal muscle, heart and liver mitochondrial electron transport activities in rats and dogs of various ages. In the skeletal muscle mitochondria, decrease in the activity of complex I was observed in rats aged 28 weeks, and further reduction of the activity was observed in rats aged 55 weeks. A significant decrease in complex IV activity was observed in rats aged 55 weeks. No significant reduction in complex II and III activities were observed in rats aged up to 100 weeks. Significant decreases in complex I and IV activities were observed in heart muscles of rats aged 100 weeks, while no significant changes in the activity of complex I in liver mitochondria were observed in rats aged up to 100 weeks. Similar results were obtained in dogs, i.e., the activity of complex I was the most susceptible to aging among the activities of complexes; and skeletal muscle mitochondria were the most susceptible to aging among the tissues. From our results, involvement of mitochondria in the development of age-related decline in cellular function is especially emphasized in post mitotic cells, and age-associated mitochondrial functional changes are stressed in mitochondrial complexes which contain mitochondrial DNA-encoded subunits.

摘要

我们测定了不同年龄大鼠和犬的骨骼肌、心脏及肝脏线粒体电子传递活性。在骨骼肌线粒体中,28周龄大鼠的复合体I活性降低,55周龄大鼠的该活性进一步降低。55周龄大鼠的复合体IV活性显著降低。在100周龄以内的大鼠中,未观察到复合体II和III活性有显著降低。100周龄大鼠的心肌中,复合体I和IV活性显著降低,而在100周龄以内的大鼠肝脏线粒体中,未观察到复合体I活性有显著变化。在犬中也得到了类似结果,即复合体I的活性在各复合体活性中对衰老最为敏感;骨骼肌线粒体在各组织中对衰老最为敏感。从我们的结果来看,有丝分裂后细胞尤其强调线粒体参与细胞功能与年龄相关的衰退的发生过程,并且线粒体中包含线粒体DNA编码亚基的线粒体复合体中与年龄相关的线粒体功能变化受到关注。

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