Sieck G C, Prakash Y S
Mayo Clinic, Rochester, MN 55905, USA.
Can J Appl Physiol. 1997 Jun;22(3):197-230. doi: 10.1139/h97-014.
The neuromuscular junction (NMJ) forms the communicative link between motoneurons and muscle fibers. The properties of motoneurons and muscle fibers are matched in different types of motor units, which are recruited selectively to accomplish various motor behaviors. Motor units and muscle fibers can be classified based upon structural and functional properties, reflecting the essential match between motoneuron and muscle fiber. Using a three-color immunofluorescence technique combined with confocal microscopy, we examined the three-dimensional structure of pre- and postsynaptic elements of NMJs on different fiber types in the rat diaphragm muscle. On type I and IIa fibers, comprising slow-twitch and fast-twitch fatigue-resistant motor units, the structure of NMJs is far less complex than on type IIx6 and IIb fibers comprising fast-twitch fatigue-intermediate and fast-twitch fatigable motor units. We also found a greater extent of overlap between pre- and postsynaptic elements of NMJs on type I and IIa fibers. This review focuses on these normal phenotypic differences in NMJ properties and on the adaptations that occur under various conditions of altered use.
神经肌肉接头(NMJ)构成了运动神经元与肌纤维之间的通讯连接。在不同类型的运动单位中,运动神经元和肌纤维的特性相互匹配,这些运动单位被选择性地募集以完成各种运动行为。运动单位和肌纤维可根据结构和功能特性进行分类,这反映了运动神经元与肌纤维之间的基本匹配关系。我们运用三色免疫荧光技术结合共聚焦显微镜,研究了大鼠膈肌不同纤维类型上神经肌肉接头的突触前和突触后元件的三维结构。在由慢肌纤维和抗疲劳快肌纤维组成的I型和IIa型纤维上,神经肌肉接头的结构远不如由快肌纤维、易疲劳中间型和易疲劳快肌纤维组成的IIx6型和IIb型纤维上的复杂。我们还发现I型和IIa型纤维上神经肌肉接头的突触前和突触后元件之间的重叠程度更大。本综述聚焦于神经肌肉接头特性的这些正常表型差异以及在各种使用改变条件下所发生的适应性变化。