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可视化神经元中的mRNA定位和局部蛋白质翻译。

Visualizing mRNA localization and local protein translation in neurons.

作者信息

Dahm Ralf, Zeitelhofer Manuel, Götze Bernhard, Kiebler Michael A, Macchi Paolo

机构信息

Center for Brain Research, Division of Neuronal Cell Biology, Medical University of Vienna, Spitalgasse 4, A-1090 Vienna, Austria.

出版信息

Methods Cell Biol. 2008;85:293-327. doi: 10.1016/S0091-679X(08)85013-3.

Abstract

Fluorescent proteins (FPs) have been successfully used to study the localization and interactions of proteins in living cells. They have also been instrumental in analyzing the proteins involved in the localization of RNAs in different cell types, including neurons. With the development of methods that also tag RNAs via fluorescent proteins, researchers now have a powerful tool to covisualize RNAs and associated proteins in living neurons. Here, we review the current status of the use of FPs in the study of transport and localization of ribonucleoprotein particles (RNPs) in neurons and provide key protocols used to introduce transgenes into cultured neurons, including calcium-phosphate-based transfection and nucleofection. These methods allow the fast and efficient expression of fluorescently tagged fusion proteins in neurons at different stages of differentiation and form the basis for fluorescent protein-based live cell imaging in neuronal cultures. Additional protocols are given that allow the simultaneous visualization of RNP proteins and cargo RNAs in living neurons and aspects of the visualization of fluorescently tagged proteins in neurons, such as colocalization studies, are discussed. Finally, we review approaches to visualize the local synthesis of proteins in distal dendrites and axons.

摘要

荧光蛋白(FPs)已成功用于研究活细胞中蛋白质的定位和相互作用。它们在分析不同细胞类型(包括神经元)中参与RNA定位的蛋白质方面也发挥了重要作用。随着通过荧光蛋白标记RNA方法的发展,研究人员现在拥有了一个强大的工具,可以在活神经元中共可视化RNA和相关蛋白质。在这里,我们回顾了荧光蛋白在神经元核糖核蛋白颗粒(RNPs)运输和定位研究中的应用现状,并提供了将转基因导入培养神经元的关键方案,包括基于磷酸钙的转染和核转染。这些方法能够在不同分化阶段的神经元中快速高效地表达荧光标记的融合蛋白,构成了神经元培养中基于荧光蛋白的活细胞成像的基础。还给出了其他方案,这些方案能够在活神经元中同时可视化RNP蛋白和货物RNA,并讨论了神经元中荧光标记蛋白可视化的各个方面,如共定位研究。最后,我们回顾了可视化远端树突和轴突中蛋白质局部合成的方法。

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