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生长轴突中的微管组装与周转

Microtubule assembly and turnover in growing axons.

作者信息

Li Y, Black M M

机构信息

Department of Anatomy and Cell Biology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.

出版信息

J Neurosci. 1996 Jan 15;16(2):531-44. doi: 10.1523/JNEUROSCI.16-02-00531.1996.

Abstract

We have shown previously that axonal microtubules (MTs) are composite, consisting of two distinct domains that differ in their content of tyrosinated alpha-tubulin (tyr-tub). One domain is poor in tyr-tub and is situated at the minus end of the MT. The other domain is rich in tyr-tub and extends from the plus end of the tyr-tub-poor domain to the end of the MT. We have proposed that the spatial variation in the relative content of tyr-tub along individual MTs reflects corresponding variations in their dynamic properties. The present experiments have tested this hypothesis directly by microinjecting biotin-labeled tubulin (Bt-tub) into cultured sympathetic neurons and then quantifying the appearance of Bt-tub in the tyr-tub-rich and tyr-tub-poor polymer of the axon. Bt-tub appeared in axonal MTs with a half-life (t1/2) of approximately 2.2 hr. This time course reflected an average of two distinct components corresponding to the tyr-tub-rich and tyr-tub-poor polymer that had apparent t1/2 values of approximately 1.3 and 3.3 hr, respectively. In individual MTs, Bt-tub first appeared in the tyr-tub-rich domain and then only later appeared in the tyr-tub-poor domain. Also, the appearance of Bt-tub in the tyr-tub-rich polymer typically began precisely at its origin from the tyr-tub-poor domain, indicating that the tyr-tub-poor polymer is assembly-competent and nucleates the assembly of tyr-tub-rich polymer locally within the axon. The stability properties of axonal MTs are discussed in terms of organizing MT assembly locally in the axon and generating long MTs for growing long axons.

摘要

我们之前已经表明,轴突微管(MTs)是复合结构,由两个不同的结构域组成,它们的酪氨酸化α-微管蛋白(tyr-tub)含量不同。一个结构域的tyr-tub含量低,位于MT的负端。另一个结构域富含tyr-tub,从tyr-tub含量低的结构域的正端延伸至MT的末端。我们提出,沿着单个MTs的tyr-tub相对含量的空间变化反映了它们动态特性的相应变化。本实验通过将生物素标记的微管蛋白(Bt-tub)显微注射到培养的交感神经元中,然后对轴突中富含tyr-tub和tyr-tub含量低的聚合物中Bt-tub的出现情况进行定量,直接检验了这一假设。Bt-tub出现在轴突MTs中的半衰期(t1/2)约为2.2小时。这个时间进程反映了两个不同成分的平均值,分别对应富含tyr-tub和tyr-tub含量低的聚合物,其表观t1/2值分别约为1.3小时和3.3小时。在单个MTs中,Bt-tub首先出现在富含tyr-tub的结构域,随后才出现在tyr-tub含量低的结构域。此外,Bt-tub在富含tyr-tub聚合物中的出现通常恰好始于其从tyr-tub含量低的结构域的起始处,这表明tyr-tub含量低的聚合物具有组装能力,并在轴突内局部引发富含tyr-tub聚合物的组装。本文从在轴突中局部组织MT组装以及为生长中的长轴突生成长MTs的角度讨论了轴突MTs的稳定性特性。

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