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神经元极性:轴突形成之前存在矢量性细胞质流动。

Neuronal polarity: vectorial cytoplasmic flow precedes axon formation.

作者信息

Bradke F, Dotti C G

机构信息

Cell Biology Program, European Molecular Biology Laboratory, Heidelburg, Federal Republic of Germany.

出版信息

Neuron. 1997 Dec;19(6):1175-86. doi: 10.1016/s0896-6273(00)80410-9.

Abstract

Axon formation in multipolar neurons is believed to depend on the existence of precise sorting mechanisms for axonal membrane and membrane-associated proteins. Conclusive evidence in living neurons, however, is lacking. In the present study, we use light and video microscopy to address this issue directly. We show that axon formation is preceded by the appearance in one of the multiple neurites of (1) a larger growth cone, (2) a higher amount and greater transport of membrane organelles, (3) polarized delivery of TGN-derived vesicles, (4) a higher concentration of mitochondria and peroxisomes, (5) a higher concentration of a cytosolic protein, and (6) a higher concentration of ribosomes. These results provide evidence for the involvement of bulk cytoplasmic flow as an early determinant of neuronal morphological polarization. Molecular sorting events would later trigger the establishment of functional polarity.

摘要

多极神经元中的轴突形成被认为依赖于轴突膜和膜相关蛋白精确分选机制的存在。然而,在活神经元中缺乏确凿的证据。在本研究中,我们使用光学显微镜和视频显微镜直接解决这个问题。我们发现轴突形成之前,多个神经突之一会出现以下情况:(1)一个更大的生长锥;(2)膜细胞器数量更多且运输量更大;(3)高尔基体反面膜囊来源的囊泡的极化递送;(4)线粒体和过氧化物酶体浓度更高;(5)一种胞质蛋白浓度更高;(6)核糖体浓度更高。这些结果为大量细胞质流动作为神经元形态极化的早期决定因素的参与提供了证据。分子分选事件随后将触发功能极性的建立。

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