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微管通过与驱动蛋白运动头部相互作用,为极化轴突运输提供方向线索。

Microtubules provide directional cues for polarized axonal transport through interaction with kinesin motor head.

作者信息

Nakata Takao, Hirokawa Nobutaka

机构信息

Department of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, 7-3-1, Hongo, Tokyo, Japan 113-0033.

出版信息

J Cell Biol. 2003 Sep 15;162(6):1045-55. doi: 10.1083/jcb.200302175.

Abstract

Post-Golgi carriers of various newly synthesized axonal membrane proteins, which possess kinesin (KIF5)-driven highly processive motility, were transported from the TGN directly to axons. We found that KIF5 has a preference to the microtubules in the initial segment of axon. Low dose paclitaxel treatment caused missorting of KIF5, as well as axonal membrane proteins to the tips of dendrites. Microtubules in the initial segment of axons showed a remarkably high affinity to EB1-YFP, which was known to bind the tips of growing microtubules. These findings revealed unique features of the microtubule cytoskeletons in the initial segment, and suggested that they provide directional information for polarized axonal transport.

摘要

各种新合成的轴突膜蛋白的高尔基体后载体具有驱动蛋白(KIF5)驱动的高度持续性运动,它们从反式高尔基体网络(TGN)直接运输到轴突。我们发现KIF5优先与轴突起始段的微管结合。低剂量紫杉醇处理导致KIF5以及轴突膜蛋白错误分选至树突尖端。轴突起始段的微管对EB1-YFP显示出极高的亲和力,已知EB1-YFP可结合正在生长的微管尖端。这些发现揭示了轴突起始段微管细胞骨架的独特特征,并表明它们为极化轴突运输提供方向信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3441/2172855/c680abb1cc13/200302175f1.jpg

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