Salviati G, Betto R, Danieli Betto D, Zeviani M
Biochem J. 1984 Nov 15;224(1):215-25. doi: 10.1042/bj2240215.
In this study the polymorphism of myofibrillar proteins and the Ca2+-uptake activity of sarcoplasmic reticulum were analysed in single fibres from human skeletal muscles. Two populations of histochemically identified type-I fibres were found differing in the number of light-chain isoforms of the constituent myosin, whereas the pattern of light chains of fast myosin of type-IIA and type-IIB fibres was indistinguishable. Regulatory proteins, troponin and tropomyosin, and other myofibrillar proteins, such as M- and C-proteins, showed specific isoforms in type-I and type-II fibres. Furthermore, tropomyosin presented different stoichiometries of the alpha- and beta-subunits between the two types of fibres. Sarcoplasmic-reticulum volume, as indicated by the maximum capacity for calcium oxalate accumulation, was almost identical in type-I and type-II fibres, whereas the rate of Ca2+ transport was twice as high in type-II as compared with type-I fibres. It is concluded that, in normal human muscle fibres, there is a tight segregation of fast and slow isoforms of myofibrillar proteins that is very well co-ordinated with the relaxing activity of the sarcoplasmic reticulum. These findings may thus represent a molecular correlation with the differences of the twitch-contraction time between fast and slow human motor units. This tight segregation is partially lost in the muscle fibres of elderly individuals.
在本研究中,对人骨骼肌单纤维中的肌原纤维蛋白多态性和肌浆网的钙摄取活性进行了分析。发现两个组织化学鉴定的I型纤维群体,其组成肌球蛋白的轻链同工型数量不同,而IIA型和IIB型纤维的快肌球蛋白轻链模式无法区分。调节蛋白肌钙蛋白和原肌球蛋白以及其他肌原纤维蛋白,如M蛋白和C蛋白,在I型和II型纤维中显示出特定的同工型。此外,原肌球蛋白在两种纤维之间呈现出α和β亚基的不同化学计量。以草酸钙积累的最大能力表示的肌浆网体积在I型和II型纤维中几乎相同,而II型纤维中Ca2+转运速率是I型纤维的两倍。得出的结论是,在正常人类肌肉纤维中,肌原纤维蛋白的快、慢同工型存在紧密的分离,这与肌浆网的舒张活性非常协调。因此,这些发现可能代表了与人类快、慢运动单位之间收缩时间差异的分子相关性。在老年人的肌肉纤维中,这种紧密的分离部分丧失。