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首页> 外文期刊>Journal of Cell Science >Tau regulates the attachment/detachment but not the speed of motors in microtubule-dependent transport of single vesicles and organelles.
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Tau regulates the attachment/detachment but not the speed of motors in microtubule-dependent transport of single vesicles and organelles.

机译:Tau调节单囊泡和细胞器的微管依赖性运输中马达的附着/分离,而不是马达的速度。

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摘要

We have performed a real time analysis of fluorescence-tagged vesicle and mitochondria movement in living CHO cells transfected with microtubule-associated protein tau or its microtubule-binding domain. tau does not alter the speed of moving vesicles, but it affects the frequencies of attachment and detachment to the microtubule tracks. Thus, tau decreases the run lengths both for plus-end and minus-end directed motion to an equal extent. Reversals from minus-end to plus-end directed movement of single vesicles are strongly reduced by tau, but reversals in the opposite direction (plus to minus) are not. Analogous effects are observed with the transport of mitochondria and even with that of vimentin intermediate filaments. The net effect is a directional bias in the minus-end direction of microtubules which leads to the retraction of mitochondria or vimentin IFs towards the cell center. The data suggest that tau can control intracellular trafficking by affecting the attachment and detachment cycle of the motors, in particular by reducing the attachment of kinesin to microtubules, whereas the movement itself is unaffected.
机译:我们已经进行了实时荧光标记的囊泡和线粒体运动与微管相关蛋白tau或其微管结合域转染的活CHO细胞中的分析。 tau不会改变小泡的移动速度,但会影响微管轨道的附着和分离频率。因此,tau将正向和负向定向运动的游程长度均等地减小。 tau大大减少了单囊泡从负端到正端的反向移动,但反向的反向(正到负)却没有。线粒体甚至波形蛋白中间丝的转运也观察到类似的作用。净效应是微管负端方向的方向性偏向,导致线粒体或波形蛋白IF向细胞中心缩回。数据表明,tau可以通过影响电机的附着和分离周期,特别是通过减少驱动蛋白与微管的附着来控制细胞内运输,而运动本身不受影响。

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