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高内涵显微镜技术鉴定出新的神经突生长调节因子。

High-content microscopy identifies new neurite outgrowth regulators.

作者信息

Laketa Vibor, Simpson Jeremy C, Bechtel Stephanie, Wiemann Stefan, Pepperkok Rainer

机构信息

Cell Biology and Biophysics Unit, European Molecular Biology Laboratory-Heidelberg, 69117 Heidelberg, Germany.

出版信息

Mol Biol Cell. 2007 Jan;18(1):242-52. doi: 10.1091/mbc.e06-08-0666. Epub 2006 Nov 8.

Abstract

Neurons, with their long axons and elaborate dendritic arbour, establish the complex circuitry that is essential for the proper functioning of the nervous system. Whereas a catalogue of structural, molecular, and functional differences between axons and dendrites is accumulating, the mechanisms involved in early events of neuronal differentiation, such as neurite initiation and elongation, are less well understood, mainly because the key molecules involved remain elusive. Here we describe the establishment and application of a microscopy-based approach designed to identify novel proteins involved in neurite initiation and/or elongation. We identified 21 proteins that affected neurite outgrowth when ectopically expressed in cells. Complementary time-lapse microscopy allowed us to discriminate between early and late effector proteins. Localization experiments with GFP-tagged proteins in fixed and living cells revealed a further 14 proteins that associated with neurite tips either early or late during neurite outgrowth. Coexpression experiments of the new effector proteins provide a first glimpse on a possible functional relationship of these proteins during neurite outgrowth. Altogether, we demonstrate the potential of the systematic microscope-based screening approaches described here to tackle the complex biological process of neurite outgrowth regulation.

摘要

神经元凭借其长长的轴突和复杂的树突分支,构建起对神经系统正常运作至关重要的复杂电路。尽管轴突和树突之间在结构、分子和功能上的差异目录不断增加,但神经元分化早期事件(如神经突起始和伸长)所涉及的机制却了解较少,主要是因为其中涉及的关键分子仍难以捉摸。在此,我们描述了一种基于显微镜的方法的建立和应用,该方法旨在识别参与神经突起始和/或伸长的新蛋白质。我们鉴定出21种在细胞中异位表达时会影响神经突生长的蛋白质。互补的延时显微镜使我们能够区分早期和晚期效应蛋白。在固定和活细胞中对绿色荧光蛋白标记的蛋白质进行定位实验,又发现了14种在神经突生长过程中早期或晚期与神经突尖端相关的蛋白质。新效应蛋白的共表达实验初步揭示了这些蛋白质在神经突生长过程中可能的功能关系。总之,我们证明了本文所述基于显微镜的系统筛选方法在解决神经突生长调节这一复杂生物学过程方面的潜力。

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