Matteoli M, Takei K, Perin M S, Südhof T C, De Camilli P
Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06510.
J Cell Biol. 1992 May;117(4):849-61. doi: 10.1083/jcb.117.4.849.
In mature neurons synaptic vesicles (SVs) undergo cycles of exo-endocytosis at synapses. It is currently unknown whether SV exocytosis and recycling occurs also in developing axons prior to synapse formation. To address this question, we have developed an immunocytochemical assay to reveal SV exo-endocytosis in hippocampal neurons developing in culture. In this assay antibodies directed against the lumenal domain of synaptotagmin I (Syt I), an intrinsic membrane protein of SVs, are used to reveal exposure of SV membranes at the cell surface. Addition of antibodies to the culture medium of living neurons for 1 hr at 37 degrees C resulted in their rapid and specific internalization by all neuronal processes and, particularly, by axons. Double immunofluorescence and electron microscopy immunocytochemistry indicated that the antibodies were retained within SVs in cell processes and underwent cycles of exo-endocytosis in parallel with SV membranes. In contrast, another endocytotic marker, wheat germ agglutinin, was rapidly cleared from the processes and transported to the cell body. Antibody-labeled SVs were still present in axons several days after antibody loading and became clustered at presynaptic sites in parallel with synaptogenesis. These results demonstrate that SVs undergo multiple cycles of exo-endocytosis in developing neuronal processes irrespective of the presence of synaptic contacts.
在成熟神经元中,突触小泡(SVs)在突触处经历胞吐 - 内吞循环。目前尚不清楚在突触形成之前,SV的胞吐和再循环是否也发生在发育中的轴突中。为了解决这个问题,我们开发了一种免疫细胞化学检测方法,以揭示培养中发育的海马神经元中的SV胞吐 - 内吞作用。在该检测中,针对突触结合蛋白I(Syt I)腔内结构域的抗体(Syt I是SV的一种内在膜蛋白)用于揭示SV膜在细胞表面的暴露情况。将抗体添加到活神经元的培养基中,在37℃下孵育1小时,导致所有神经突起,特别是轴突迅速且特异性地将其内化。双重免疫荧光和电子显微镜免疫细胞化学表明,抗体保留在细胞突起的SV内,并与SV膜并行经历胞吐 - 内吞循环。相比之下,另一种内吞标记物,麦胚凝集素,迅速从突起中清除并转运到细胞体。抗体加载数天后,抗体标记的SV仍存在于轴突中,并与突触形成并行地聚集在突触前位点。这些结果表明,无论是否存在突触接触,SV在发育中的神经突起中都会经历多个胞吐 - 内吞循环。