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外周神经中突触囊泡和活性区蛋白的协调双向运输。

Coordinated bi-directional trafficking of synaptic vesicle and active zone proteins in peripheral nerves.

机构信息

Wallenberg Neuroscience Center, Lund University Biomedical Center, Lund, Sweden.

Fralin Biomedical Research Institute, Virginia Tech Carilion School of Medicine, Blacksburg, VA, USA.

出版信息

Biochem Biophys Res Commun. 2021 Jun 25;559:92-98. doi: 10.1016/j.bbrc.2021.04.041. Epub 2021 Apr 29.

Abstract

Synaptic transmission is mediated by neurotransmitters that are stored in synaptic vesicles (SV) and released at the synaptic active zone (AZ). While in recent years major progress has been made in unraveling the molecular machinery responsible for SV docking, fusion and exocytosis, the mechanisms governing AZ protein and SV trafficking through axons still remain unclear. Here, we performed stop-flow nerve ligation to examine axonal trafficking of endogenous AZ and SV proteins. Rat sciatic nerves were collected 1 h, 3 h and 8 h post ligation and processed for immunohistochemistry and electron microscopy. First, we followed the transport of an integral synaptic vesicle protein, SV2A and a SV-associated protein involved in SV trafficking, Rab3a, and observed that while SV2A accumulated on both sides of ligation, Rab3a was only noticeable in the proximal segment of the ligated nerve indicating that only SV trans-membrane protein SV2A displayed a bi-directional axonal transport. We then demonstrate that multiple AZ proteins accumulate rapidly on either side of the ligation with a timescale similar to that of SV2A. Overall, our data uncovers an unexpected robust bi-directional, coordinated -trafficking of SV and AZ proteins in peripheral nerves. This implies that pathological disruption of axonal trafficking will not only impair trafficking of newly synthesized proteins to the synapse but will also affect retrograde transport, leading to neuronal dysfunction and likely neurodegeneration.

摘要

突触传递由储存在突触小泡 (SV) 中的神经递质介导,并在突触活性区 (AZ) 释放。近年来,在揭示负责 SV docking、融合和胞吐的分子机制方面取得了重大进展,但调节 AZ 蛋白和 SV 通过轴突运输的机制仍不清楚。在这里,我们进行了停流神经结扎来研究内源性 AZ 和 SV 蛋白的轴突运输。结扎后 1h、3h 和 8h 收集大鼠坐骨神经并进行免疫组织化学和电子显微镜检查。首先,我们跟踪了一个完整的突触囊泡蛋白 SV2A 和一个参与 SV 运输的 SV 相关蛋白 Rab3a 的运输,观察到虽然 SV2A 在结扎的两侧积累,但 Rab3a 仅在结扎神经的近端段可见,表明只有 SV 跨膜蛋白 SV2A 显示出双向轴突运输。然后,我们证明多个 AZ 蛋白在结扎的两侧迅速积累,其时间尺度与 SV2A 相似。总的来说,我们的数据揭示了外周神经中 SV 和 AZ 蛋白出人意料的强大的双向协调运输。这意味着轴突运输的病理性破坏不仅会损害新合成的蛋白质向突触的运输,还会影响逆行运输,导致神经元功能障碍,可能导致神经退行性变。

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