Kugelberg E, Thornell L E
Muscle Nerve. 1983 Feb;6(2):149-53. doi: 10.1002/mus.880060211.
Isometric contraction time (Tc) of 19 fast and slow rat motor units in the soleus and the tibialis anterior muscles was measured. The motor unit fibers subsequently marked by glycogen depletion were histochemically fiber typed as well as analyzed ultrastructurally with respect to volume of the sarcoplasmic reticulum terminal cisternae. The volume density of terminal cisternae (VVTC) was inversely related to Tc over the whole range of motor units, irrespective of type of muscle. The continuous variations in VVTC are concluded to match the extrinsic control of time course of contraction, and fusion frequency of the motor unit to match the frequency characteristics of the individual motoneurons. The volume density dependence of terminal cisternae function would result in an indirect coupling between amount and rate of calcium release and rate of calcium recaptured. VVTC and Tc were the same for some tibialis anterior and soleus motor units in spite of the different types of myosin, indicating that the type 1 and type 2 myosins have specific structural differences in fast as compared with slow muscles.
测量了比目鱼肌和胫骨前肌中19个快、慢大鼠运动单位的等长收缩时间(Tc)。随后,通过糖原耗竭标记的运动单位纤维进行了组织化学纤维分型,并对肌浆网终池体积进行了超微结构分析。无论肌肉类型如何,在整个运动单位范围内,终池的体积密度(VVTC)与Tc呈负相关。得出结论,VVTC的连续变化与收缩时间过程的外在控制相匹配,运动单位的融合频率与单个运动神经元的频率特性相匹配。终池功能对体积密度的依赖性将导致钙释放量和速率与钙重摄取速率之间的间接耦合。尽管肌球蛋白类型不同,但一些胫骨前肌和比目鱼肌运动单位的VVTC和Tc相同,这表明与慢肌相比,快肌中的1型和2型肌球蛋白具有特定的结构差异。