Hilber K, Galler S
Abteilung Tierphysiologie, Universität Salzburg, Austria.
Pflugers Arch. 1997 Sep;434(5):551-8. doi: 10.1007/s004240050435.
Experiments were conducted to investigate the mechanics of contraction of chemically skinned muscle fibre segments of a biopsied sample of single human quadriceps muscle. Subsequently, the isoforms of the myosin heavy chain (MHC) were analysed by sodium dodecyl sulphate (SDS) gel electrophoresis. Of the 41 fibres, 26 contained MHCI (type I), 11 of the fibres contained MHCIIa (type IIA), and 4 of the fibres contained both MHCI and MHCIIa (of which MHCIIa was always slightly predominant (type IIC)). Distinct differences between fibre types were found in terms of the kinetics of force responses following stepwise length changes (order of velocity: IIA > IIC > I). The differences in maximal shortening velocity and in the kinetics of Ca(2+)-dependent activation were of the same order, but much less pronounced. Type I fibres had significantly greater fibre diameters than type IIA fibres. No significant differences were found among different fibre types in terms of isometric tension, resting sarcomere length or the length change needed to discharge the elasticity of maximally Ca(2+)-activated fibres (V0 value). The distribution of shortening velocity and kinetics of stretch activation values suggest that two muscle fibre subtypes may exist in human type I fibres.
开展实验以研究取自单个人体股四头肌活检样本的化学去皮肤肌纤维节段的收缩机制。随后,通过十二烷基硫酸钠(SDS)凝胶电泳分析肌球蛋白重链(MHC)的亚型。在41根纤维中,26根含有MHCI(I型),11根纤维含有MHCIIa(IIA型),4根纤维同时含有MHCI和MHCIIa(其中MHCIIa总是略占优势(IIC型))。在逐步长度变化后的力响应动力学方面发现了纤维类型之间的明显差异(速度顺序:IIA>IIC>I)。最大缩短速度和钙(Ca2+)依赖性激活动力学的差异顺序相同,但不太明显。I型纤维的纤维直径明显大于IIA型纤维。在等长张力、静息肌节长度或释放最大钙(Ca2+)激活纤维弹性所需的长度变化(V0值)方面,不同纤维类型之间未发现显著差异。缩短速度和拉伸激活值动力学的分布表明,人类I型纤维中可能存在两种肌纤维亚型。