Herrera A A, Grinnell A D, Wolowske B
Neuroscience. 1985 Nov;16(3):491-500. doi: 10.1016/0306-4522(85)90187-3.
After experimentally inducing long term changes in transmitter release, a series of frog neuromuscular junctions were studied with intracellular recording and then semi-serially sectioned and examined in the electron microscope. Transmitter release per unit length of motor nerve terminal was well correlated with several measures of the length of individual presynaptic active zones and with the number of mitochondria per terminal. Total release from each terminal correlated with estimates of the total amount of active zone. This study of neuromuscular junctions in sartorius muscles of the frog Rana pipiens was undertaken to search for ultrastructural correlates of the increase in transmitter release efficacy that follows denervation of the contralateral sartorius. This treatment typically results in greatly enhanced release at some synapses while others appear unaffected. In the present study, nine identified junctions with known physiological properties were sectioned every 6 micron throughout much of their length to yield 40-105 cross-sectional profiles per junction. Overall, these 9 synapses showed a 33-fold range in quantal transmitter release and an 18-fold range in release per unit nerve terminal. Release correlated with estimates of active zone size. No correlations were found between release and the density of synaptic vesicles adjacent to active zones. Our results suggest that active zones in motor nerve terminals are plastic structures, and that changes in active zone size may be the structural basis of long term changes in transmitter release and synaptic efficacy.
在通过实验诱导递质释放的长期变化后,对一系列青蛙神经肌肉接头进行了细胞内记录研究,然后进行半连续切片并在电子显微镜下检查。运动神经末梢单位长度的递质释放与单个突触前活动区长度的几种测量值以及每个末梢线粒体的数量密切相关。每个末梢的总释放与活动区总量的估计值相关。对豹蛙缝匠肌神经肌肉接头的这项研究旨在寻找对侧缝匠肌去神经支配后递质释放效能增加的超微结构相关因素。这种处理通常会导致一些突触处的释放大大增强,而其他突触似乎未受影响。在本研究中,对9个已确定的具有已知生理特性的接头在其大部分长度上每隔6微米进行切片,每个接头产生40 - 105个横截面图像。总体而言,这9个突触在量子递质释放方面显示出33倍的范围,在单位神经末梢释放方面显示出18倍的范围。释放与活动区大小的估计值相关。未发现释放与活动区附近突触小泡密度之间存在相关性。我们的结果表明,运动神经末梢的活动区是可塑性结构,活动区大小的变化可能是递质释放和突触效能长期变化的结构基础。