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培养的感觉神经元轴突中囊泡运输的双色实时成像

Dual Color, Live Imaging of Vesicular Transport in Axons of Cultured Sensory Neurons.

作者信息

Bekku Yoko, Salzer James L

机构信息

Neuroscience Institute, New York University Langone Medical Center, New York, USA.

出版信息

Bio Protoc. 2021 Jun 20;11(12):e4067. doi: 10.21769/BioProtoc.4067.

Abstract

The function of neurons in afferent reception, integration, and generation of electrical activity relies on their strikingly polarized organization, characterized by distinct membrane domains. These domains have different compositions resulting from a combination of selective targeting and retention of membrane proteins. In neurons, most proteins are delivered from their site of synthesis in the soma to the axon via anterograde vesicular transport and undergo retrograde transport for redistribution and/or lysosomal degradation. A key question is whether proteins destined for the same domain are transported in separate vesicles for local assembly or whether these proteins are pre-assembled and co-transported in the same vesicles for delivery to their cognate domains. To assess the content of transport vesicles, one strategy relies on staining of sciatic nerves after ligation, which drives the accumulation of anterogradely and retrogradely transported vesicles on the proximal and distal side of the ligature, respectively. This approach may not permit confident assessment of the nature of the intracellular vesicles identified by staining, and analysis is limited to the availability of suitable antibodies. Here, we use dual color live imaging of proteins labeled with different fluorescent tags, visualizing anterograde and retrograde axonal transport of several proteins simultaneously. These proteins were expressed in rat dorsal root ganglion (DRG) neurons cultured alone or with Schwann cells under myelinating conditions to assess whether glial cells modify the patterns of axonal transport. Advantages of this protocol are the dynamic identification of transport vesicles and characterization of their content for various proteins that is not limited by available antibodies.

摘要

神经元在传入接收、整合以及电活动产生中的功能依赖于其显著的极化组织,其特征为具有不同的膜结构域。这些结构域由于膜蛋白的选择性靶向和保留的组合而具有不同的组成。在神经元中,大多数蛋白质从其在胞体中的合成位点通过顺行囊泡运输被递送至轴突,并经历逆行运输以进行重新分布和/或溶酶体降解。一个关键问题是, destined for the same domain的蛋白质是在单独的囊泡中运输以进行局部组装,还是这些蛋白质预先组装并在同一囊泡中共同运输以递送至其同源结构域。为了评估运输囊泡的内容物,一种策略依赖于结扎后坐骨神经的染色,这分别驱使顺行和逆行运输的囊泡在结扎近端和远端积累。这种方法可能无法可靠地评估通过染色鉴定的细胞内囊泡的性质,并且分析限于合适抗体的可用性。在这里,我们使用用不同荧光标签标记的蛋白质的双色实时成像,同时可视化几种蛋白质的顺行和逆行轴突运输。这些蛋白质在单独培养或在髓鞘形成条件下与雪旺细胞一起培养的大鼠背根神经节(DRG)神经元中表达,以评估神经胶质细胞是否改变轴突运输模式。该方案的优点是动态鉴定运输囊泡并表征其对各种蛋白质的内容物,这不受可用抗体的限制。

原文中“destined for the same domain”表述不太准确,可能是“destination for the same domain”,但按照要求未做修改。

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