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视网膜神经节细胞在体内的极化与取向

Polarization and orientation of retinal ganglion cells in vivo.

作者信息

Zolessi Flavio R, Poggi Lucia, Wilkinson Christopher J, Chien Chi-Bin, Harris William A

机构信息

Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.

出版信息

Neural Dev. 2006 Oct 13;1:2. doi: 10.1186/1749-8104-1-2.

Abstract

In the absence of external cues, neurons in vitro polarize by using intrinsic mechanisms. For example, cultured hippocampal neurons extend arbitrarily oriented neurites and then one of these, usually the one nearest the centrosome, begins to grow more quickly than the others. This neurite becomes the axon as it accumulates molecular components of the apical junctional complex. All the other neurites become dendrites. It is unclear, however, whether neurons in vivo, which differentiate within a polarized epithelium, break symmetry by using similar intrinsic mechanisms. To investigate this, we use four-dimensional microscopy of developing retinal ganglion cells (RGCs) in live zebrafish embryos. We find that the situation is indeed very different in vivo, where axons emerge directly from uniformly polarized cells in the absence of other neurites. In vivo, moreover, components of the apical complex do not localize to the emerging axon, nor does the centrosome predict the site of axon emergence. Mosaic analysis in four dimensions, using mutants in which neuroepithelial polarity is disrupted, indicates that extrinsic factors such as access to the basal lamina are critical for normal axon emergence from RGCs in vivo.

摘要

在没有外部线索的情况下,体外培养的神经元通过内在机制形成极性。例如,培养的海马神经元会伸出方向任意的神经突,然后其中一个,通常是最靠近中心体的那个,开始比其他神经突生长得更快。当这个神经突积累顶端连接复合体的分子成分时,它就会变成轴突。所有其他神经突则变成树突。然而,尚不清楚在极化上皮内分化的体内神经元是否通过类似的内在机制打破对称性。为了研究这一点,我们对活斑马鱼胚胎中发育的视网膜神经节细胞(RGC)进行了四维显微镜观察。我们发现,在体内情况确实大不相同,轴突直接从没有其他神经突的均匀极化细胞中长出。此外,在体内,顶端复合体的成分不会定位于新出现的轴突,中心体也不能预测轴突出现的位置。利用神经上皮极性被破坏的突变体进行的四维镶嵌分析表明,诸如接触基膜等外在因素对于体内RGC正常轴突的出现至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9954/1636330/b9c7944effcc/1749-8104-1-2-1.jpg

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