Thornell L E, Carlsson E, Kugelberg E, Grove B K
Am J Physiol. 1987 Sep;253(3 Pt 1):C456-68. doi: 10.1152/ajpcell.1987.253.3.C456.
The isometric contraction time of 19 fast and slow rat motor units in the soleus and the anterior tibial muscles were recorded. The motor unit fibers, subsequently distinguished by glycogen depletion, were histochemically differentiated into fiber types and analyzed immunohistochemically for high molecular weight M-band proteins, as well as ultrastructurally for M-band fine structure, Z-disc width, and volume density of mitochondria. All fibers belonging to slow-twitch motor units in both the anterior tibialis and soleus muscles were histochemically classed as type 1. They lacked the Mr 165,000 M-protein, showed ultrastructurally a four-line M-band pattern, and had broad Z-discs, whereas the volume density of the mitochondria varied considerably. Muscle fibers belonging to the fast-twitch motor units were histochemically classed as types 2A and 2B in anterior tibialis and type 2A in soleus. They contained a three- or a five-line M-band pattern and medium-to-thin Z-discs in the anterior tibialis and a five-line M-band pattern and broad Z-discs in the soleus. Furthermore, the volume density of mitochondria showed considerable variation within and in between soleus and anterior tibialis type 2 fibers. As the differences in M-band composition and structure between fiber types overrode the intragroup variability in contraction times of slow and fast units within and between the two muscles, it is concluded that the M-band composition and structure is fundamentally related to whether the fiber is innervated by a slow or fast motor neuron, whereas other parameters such as contraction time, Z-disc width, and mitochondrial content of fibers of fast and slow units are relative and vary between muscles. Thus the M-band appearance can be used as a reliable marker to distinguish between fibers of slow- and fast-twitch motor units in rat leg muscles.
记录了19个大鼠比目鱼肌和胫骨前肌中快、慢运动单位的等长收缩时间。随后,通过糖原耗尽区分运动单位纤维,进行组织化学分化以确定纤维类型,并通过免疫组织化学分析高分子量M带蛋白,同时通过超微结构分析M带精细结构、Z盘宽度和线粒体体积密度。胫骨前肌和比目鱼肌中所有属于慢肌运动单位的纤维在组织化学上均归类为1型。它们缺乏分子量为165,000的M蛋白,超微结构显示为四线M带模式,Z盘较宽,而线粒体体积密度变化很大。胫骨前肌中属于快肌运动单位的肌纤维在组织化学上归类为2A和2B型,比目鱼肌中为2A型。它们在胫骨前肌中含有三线或五线M带模式和中等到薄的Z盘,在比目鱼肌中含有五线M带模式和宽Z盘。此外,比目鱼肌和胫骨前肌2型纤维内部以及两者之间线粒体的体积密度差异很大。由于不同纤维类型之间M带组成和结构的差异超过了两块肌肉内和之间快慢单位收缩时间的组内变异性,因此得出结论,M带组成和结构与纤维是由慢运动神经元还是快运动神经元支配基本相关,而其他参数,如收缩时间、Z盘宽度以及快慢单位纤维的线粒体含量是相对的,并且在不同肌肉之间有所不同。因此,M带外观可作为区分大鼠腿部肌肉慢、快肌运动单位纤维的可靠标记。