Lentz T L
J Cell Biol. 1969 Aug;42(2):431-43. doi: 10.1083/jcb.42.2.431.
Development of the neuromuscular junction on differentiating muscle was investigated in the regenerating limb of the newt Triturus. Motor end-plate formation begins when vesicle-filled axon terminations approach differentiating muscle cells that have reached the stage of a multinucleate cell containing myofibrils. Slight ridges or elevations occur on the muscle surface, and there is an increase in density of the cytoplasm immediately beneath the plasma membrane of the elevation. The axon becomes more closely approximated to the muscle cell and comes to lie in a shallow depression or gutter on the surface of the muscle. The surface ridges increase in length and constrict at their bases to form junctional folds. In the axon terminal, focal accumulations of vesicles are found where the axon contour projects slightly opposite the secondary synaptic clefts. Cholinesterase activity in the developing junctions was demonstrated by the thiolacetic acid-lead nitrate method. Enzymatic activity is not found on intercellular nerve fibers or the muscle surface prior to close approximation of axon endings and muscle. Eserine- and DFP-sensitive activity appears concurrently with morphological differentiation. Activity occurs in membranous tubulovesicles in the sarcoplasm subjacent to the neuromuscular junction and in association with the sarcolemma. The largest reaction deposits occur at the tips of the emerging junctional folds. Smaller and less numerous localizations occur on the axon membrane and within the axoplasm. It is concluded from these studies that the nerve endings have an inductive effect on both the morphological and chemical specializations of the neuromuscular junction.
在蝾螈 Triturus 再生肢体中,研究了分化肌肉上神经肌肉接头的发育情况。当充满囊泡的轴突终末接近已分化到含有肌原纤维的多核细胞阶段的肌肉细胞时,运动终板开始形成。肌肉表面出现轻微的嵴或隆起,隆起下方质膜下的细胞质密度增加。轴突与肌肉细胞靠得更近,位于肌肉表面的浅凹陷或沟中。表面嵴长度增加并在基部收缩形成连接褶。在轴突终末,在轴突轮廓与次级突触间隙相对处稍有突出的地方发现有囊泡的局灶性聚集。用硫代乙酸 - 硝酸铅法显示发育中接头处的胆碱酯酶活性。在轴突末梢与肌肉紧密靠近之前,在细胞间神经纤维或肌肉表面未发现酶活性。对依色林和二异丙基氟磷酸敏感的活性与形态分化同时出现。活性出现在神经肌肉接头下方肌浆中的膜性微泡中,并与肌膜相关。最大的反应沉积物出现在新出现的连接褶的尖端。较小且数量较少的沉积物出现在轴突膜和轴浆内。从这些研究得出的结论是,神经末梢对神经肌肉接头的形态和化学特化都有诱导作用。