Andrews S B, Leapman R D, Landis D M, Reese T S
Proc Natl Acad Sci U S A. 1987 Mar;84(6):1713-7. doi: 10.1073/pnas.84.6.1713.
The elemental composition of the presynaptic nerve terminals in rapidly frozen synapses of the cerebellar molecular layer was determined by electron probe x-ray microanalysis and elemental imaging of characteristic x-rays. Elemental imaging of thin freeze-dried cryosections from fresh cerebellar slices frozen within 20 sec of removal from the brain showed normal concentrations of potassium (95 +/- 6 mmol/liter wet tissue +/- SEM) and calcium (0.8 +/- 0.4 mmol/liter) in whole presynaptic terminals, even though mitochondrial and nonmitochondrial sites containing up to 30 mmol of calcium per liter were present elsewhere in the neuropil. Quantitative electron probe analysis of synaptic vesicle clusters and intraterminal mitochondria indicated that their calcium concentrations were 0.4 +/- 0.1 and 1.2 +/- 0.2 mmol/liter, respectively. The low calcium content of presynaptic organelles was confirmed by the absence of detectable deposits in preparations freeze-substituted so as to stabilize calcium content. Similar experiments were carried out on cerebellar slices rapidly frozen after incubation in vitro. The distribution of potassium and calcium in presynaptic terminals of resting and depolarized (55 mM potassium) slices was qualitatively and quantitatively similar to that in freshly excised cortex, although resting slices lacked the few calcium-rich sites that appeared in other areas of the neuropil after stimulation. The calcium concentrations in whole terminals, synaptic vesicles, and mitochondria of resting slices were 1.4 +/- 0.7, 0.7 +/- 0.2, and 0.9 +/- 0.2 mmol/liter, respectively. Thus, amounts of calcium typical of storage organelles in other tissues are not present within cerebellar synaptic vesicles, suggesting that they have a limited role in calcium storage and release.
通过电子探针X射线微分析和特征X射线的元素成像,确定了小脑分子层快速冷冻突触中突触前神经末梢的元素组成。对从脑中取出后20秒内冷冻的新鲜小脑切片的薄冷冻干燥冷冻切片进行元素成像显示,整个突触前末梢中钾(95±6 mmol/升湿组织±SEM)和钙(0.8±0.4 mmol/升)的浓度正常,尽管在神经纤维网的其他部位存在每升含高达30 mmol钙的线粒体和非线粒体部位。对突触小泡簇和末梢内线粒体的定量电子探针分析表明,它们的钙浓度分别为0.4±0.1和1.2±0.2 mmol/升。通过对冷冻替代制剂进行稳定钙含量处理后未检测到沉积物,证实了突触前细胞器的低钙含量。对体外孵育后快速冷冻的小脑切片进行了类似实验。静息和去极化(55 mM钾)切片的突触前末梢中钾和钙的分布在定性和定量上与新鲜切除的皮质相似,尽管静息切片缺乏刺激后在神经纤维网其他区域出现的少数富含钙的部位。静息切片的整个末梢、突触小泡和线粒体中的钙浓度分别为1.4±0.7、0.7±0.2和0.9±0.2 mmol/升。因此,小脑突触小泡中不存在其他组织中典型的储存细胞器的钙含量,这表明它们在钙储存和释放中的作用有限。