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类CLIP170的Tip1p在裂殖酵母中对微管动力学进行空间组织。

CLIP170-like tip1p spatially organizes microtubular dynamics in fission yeast.

作者信息

Brunner D, Nurse P

机构信息

Imperial Cancer Research Fund, London, United Kingdom.

出版信息

Cell. 2000 Sep 1;102(5):695-704. doi: 10.1016/s0092-8674(00)00091-x.

Abstract

Rod-shaped fission yeast cells grow in a polarized manner, and unlike budding yeast, the correct positioning of the growth sites at cell ends requires interphase microtubules. Here we describe a microtubule guidance mechanism that orients microtubules in the intracellular space along the long axis of the cell, guiding them to their target region at the cell ends. This mechanism involves tip1p, a CLIP170-like protein that localizes to distal tips of cytoplasmic microtubules. In the absence of tip1p, microtubular catastrophe is no longer restricted to cell ends but occurs when microtubules reach any region of the cellular cortex. Thus, tip1p enables microtubules to discriminate different cortical regions and regulates their dynamics accordingly.

摘要

杆状裂殖酵母细胞以极性方式生长,与芽殖酵母不同,细胞末端生长位点的正确定位需要间期微管。在此,我们描述了一种微管引导机制,该机制可使微管在细胞内空间沿细胞长轴定向,将它们引导至细胞末端的目标区域。这种机制涉及Tip1p,一种定位于细胞质微管远端的CLIP170样蛋白。在没有Tip1p的情况下,微管的灾难不再局限于细胞末端,而是在微管到达细胞皮层的任何区域时发生。因此,Tip1p使微管能够区分不同的皮层区域,并相应地调节它们的动态变化。

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