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轴突形成过程中的微管重构。

Microtubule reconfiguration during axogenesis.

作者信息

Yu W, Ling C, Baas P W

机构信息

Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, PA 19129, USA.

出版信息

J Neurocytol. 2001 Nov;30(11):861-75. doi: 10.1023/a:1020622530831.

Abstract

When cultured on polylysine, rat sympathetic neurons extend modest lamellae which contain a mass of relatively short non-aligned microtubules. Microtubules display movements, but these movements do not result in any obvious alterations in the overall configuration of the array. Application of a mixture of growth factors called matrigel results in a rapid expansion of the lamellae followed by the outgrowth of axons. Microtubules undergo rapid behavioral changes that result in dramatic alterations in the microtubule array. Microtubules become significantly longer, and extend to the periphery of the lamellae where they invade newly-forming axons. The microtubules align with one another and relative to the cell cortex, and draw together into bundles. Microtubules within a bundle move apart as well, particularly at the tips of developing axons. These observations demonstrate a complexity of microtubule behaviors, some of which can be explained by interactions with actin and/or by forces generated by molecular motor proteins.

摘要

当在聚赖氨酸上培养时,大鼠交感神经元会伸出适度的薄片,其中含有大量相对较短且无序排列的微管。微管会发生移动,但这些移动不会导致微管阵列的整体构型出现任何明显变化。应用一种名为基质胶的生长因子混合物会导致薄片迅速扩张,随后轴突长出。微管会经历快速的行为变化,从而导致微管阵列发生显著改变。微管变得明显更长,并延伸至薄片边缘,在那里它们侵入新形成的轴突。微管彼此对齐并相对于细胞皮层对齐,并聚集形成束。束内的微管也会分开移动,尤其是在发育中的轴突尖端。这些观察结果表明微管行为具有复杂性,其中一些可以通过与肌动蛋白的相互作用和/或分子马达蛋白产生的力来解释。

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