Harata N, Ryan T A, Smith S J, Buchanan J, Tsien R W
Department of Molecular and Cellular Physiology, Beckman Center, Stanford University School of Medicine, Stanford, CA 94305-5345, USA.
Proc Natl Acad Sci U S A. 2001 Oct 23;98(22):12748-53. doi: 10.1073/pnas.171442798.
Exo-endocytotic turnover of synaptic vesicles (SVs) at synapses between hippocampal neurons in culture was examined by electron microscopy (EM). We carried out photoconversion (PC) of the fluorescent endocytotic marker FM 1-43 by using 3,3'-diaminobenzidine to convert the dye signal into an electron-dense product. Electron-dense products were located almost exclusively in SVs, whose densities were bimodally distributed in two sharply demarcated populations, PC-positive (PC+) and PC-negative (PC-). The median densities of these populations did not vary with the proportion of vesicles stained within a presynaptic terminal (bouton). The proportion of PC+ SVs remained constant across consecutive thin sections of single boutons, but varied greatly from one bouton to another, indicating marked heterogeneity in exo-endocytotic activity. Our experiments indicated that only a minority of SVs were stained in most boutons after stimuli known to cause complete turnover of the functional vesicular pool. A direct spatial correlation was found between FM 1-43 fluorescent spots seen with light microscopy and PC+ boutons by EM. The correlation was clearer in isolated boutons than in clusters of boutons. Photoconversion in combination with FM dyes allows clarification of important aspects of vesicular traffic in central nervous system nerve terminals.
通过电子显微镜(EM)检查了培养的海马神经元之间突触处突触小泡(SVs)的外排 - 内吞周转。我们使用3,3'-二氨基联苯胺对荧光内吞标记物FM 1-43进行光转换(PC),将染料信号转化为电子致密产物。电子致密产物几乎只位于突触小泡中,其密度在两个明显划分的群体中呈双峰分布,即光转换阳性(PC +)和光转换阴性(PC -)。这些群体的中位数密度不会随着突触前终末(bouton)内染色小泡的比例而变化。在单个bouton的连续超薄切片中,PC +突触小泡的比例保持恒定,但在不同的bouton之间差异很大,这表明外排 - 内吞活性存在明显的异质性。我们的实验表明,在已知会导致功能性小泡池完全周转的刺激后,大多数bouton中只有少数突触小泡被染色。通过光学显微镜观察到的FM 1-43荧光斑点与通过EM观察到的PC + bouton之间发现了直接的空间相关性。在孤立的bouton中这种相关性比在bouton簇中更明显。光转换与FM染料相结合有助于阐明中枢神经系统神经终末中囊泡运输的重要方面。