European Neuroscience Institute Göttingen, DFG Research Center for Molecular Physiology of the Brain/Excellence Cluster 171, Grisebachstrs. 5, 37077 Göttingen, Germany.
Traffic. 2010 Jun;11(6):800-12. doi: 10.1111/j.1600-0854.2010.01058.x. Epub 2010 Mar 9.
Synaptic vesicles recycle repeatedly in order to maintain synaptic transmission. We have previously proposed that upon exocytosis the vesicle components persist as clusters, which would be endocytosed as whole units. It has also been proposed that the vesicle components diffuse into the plasma membrane and are then randomly gathered into new vesicles. We found here that while strong stimulation (releasing the entire recycling pool) causes the diffusion of the vesicle marker synaptotagmin out of synaptic boutons, moderate stimulation (releasing approximately 19% of all vesicles) is followed by no measurable diffusion. In agreement with this observation, synaptotagmin molecules labeled with different fluorescently tagged antibodies did not appear to mix upon vesicle recycling, when investigated by subdiffraction resolution stimulated emission depletion (STED) microscopy. Finally, as protein diffusion from vesicles has been mainly observed using molecules tagged with pH-sensitive green fluorescent protein (pHluorin), we have also investigated the membrane patterning of several native and pHluorin-tagged proteins. While the native proteins had a clustered distribution, the GFP-tagged ones were diffused in the plasma membrane. We conclude that synaptic vesicle components intermix little, at least under moderate stimulation, possibly because of the formation of clusters in the plasma membrane. We suggest that several pHluorin-tagged vesicle proteins are less well integrated in clusters.
突触小泡反复循环以维持突触传递。我们之前提出,在胞吐作用后,囊泡成分作为簇持续存在,这些簇将作为整体被内吞。也有人提出,囊泡成分扩散到质膜中,然后随机聚集到新的囊泡中。我们在这里发现,虽然强烈的刺激(释放整个循环池)会导致囊泡标记蛋白突触结合蛋白从突触小泡中扩散出来,但适度的刺激(释放大约 19%的所有囊泡)之后不会发生可测量的扩散。与这一观察结果一致,当通过亚衍射分辨率受激发射损耗(STED)显微镜进行研究时,用不同荧光标记的抗体标记的突触结合蛋白分子在囊泡循环时似乎没有混合。最后,由于主要使用 pH 敏感型绿色荧光蛋白 (pHluorin) 标记的分子来观察蛋白质从囊泡中的扩散,我们还研究了几种天然和 pHluorin 标记的蛋白质在膜上的分布。虽然天然蛋白质呈簇状分布,但 GFP 标记的蛋白质在质膜中扩散。我们得出结论,至少在适度刺激下,突触囊泡成分很少混合,这可能是由于在质膜中形成了簇。我们建议,一些 pHluorin 标记的囊泡蛋白在簇中的整合程度较低。