Holmes J M, Hilber K, Galler S, Neil D M
Division of Environmental and Evolutionary Biology, University of Glasgow, Scotland, UK.
J Muscle Res Cell Motil. 1999 Apr;20(3):265-78. doi: 10.1023/a:1005481725344.
Mechanical properties of myofibrillar bundles from single chemically skinned fibres from the superficial abdominal flexor muscle of the Norway lobster Nephrops norvegicus were measured, and the protein content of these fibres was analysed by SDS-PAGE. Two slow fibre phenotypes (S1, S2) were distinguished on the basis of their myofibrillar protein assemblages. Data from 9 S1 and 8 S2 fibres obtained at similar sarcomere length demonstrate significant differences between the fibre types in maximal tension (N cm-2, S1: 10.5 +/- 3.9; S2: 3.1 +/- 0.8), in the delay of the peak of stretch activation (ms, S1: 122 +/- 18; S2: 412 +/- 202), in fibre stiffness (N cm-2 per nm half sarcomere, S1: 0.36 +/- 0.19; S2: 0.09 +/- 0.03) and in maximal shortening velocity (fibre length s-1, S1: 0.53 +/- 0.10; S2: 0.27 +/- 0.06). Furthermore, the maximal power output of the type S1 fibres was about five times larger than that of S2 fibres. The power output was maximal at lower loads in S1 fibres (relative load = 0.37 +/- 0.04) than in S2 fibres (relative load = 0.44 +/- 0.05). This study represents a comprehensive investigation of two slow muscle fibre types which are thought to be specialized for slow movements (S1 fibres) and for the postural control of the abdomen (S2 fibres).
对挪威龙虾(Nephrops norvegicus)腹侧浅屈肌单根化学去膜纤维的肌原纤维束的力学性能进行了测量,并通过SDS-PAGE分析了这些纤维的蛋白质含量。根据肌原纤维蛋白组合区分出两种慢肌纤维表型(S1、S2)。在相似肌节长度下获得的9根S1纤维和8根S2纤维的数据表明,两种纤维类型在最大张力(N/cm²,S1:10.5±3.9;S2:3.1±0.8)、拉伸激活峰值延迟(ms,S1:122±18;S2:412±202)、纤维刚度(每半肌节纳米N/cm²,S1:0.36±0.19;S2:0.09±0.03)和最大缩短速度(纤维长度/s,S1:0.53±0.10;S2:0.27±0.06)方面存在显著差异。此外,S1型纤维的最大功率输出约为S2型纤维的五倍。S1纤维在较低负荷(相对负荷=0.37±0.(此处原文可能有误,推测为0.37±0.04))下的功率输出比S2纤维(相对负荷=0.44±0.05)时的最大功率输出更大。这项研究对两种慢肌纤维类型进行了全面研究,这两种纤维类型被认为分别专门用于缓慢运动(S1纤维)和腹部姿势控制(S2纤维)。