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Marking and measuring single microtubules by PRC1 and kinesin-4

机译:通过PRC1和kinesin-4标记和测量单个微管

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Error-free cell division depends on the assembly of the spindle midzone, a specialized array of overlapping microtubules that emerges between segregating chromosomes during anaphase. The molecular mechanisms by which a subset of dynamic microtubules from the metaphase spindle are selected and organized into a stable midzone array are poorly understood. Here, we show using in vitro reconstitution assays that PRC1 and kinesin-4, two microtubule-associated proteins required for midzone assembly, can tag microtubule plus ends. Remarkably, the size of these tags is proportional to filament length. We determine the crystal structure of the PRC1 homodimer and map the protein-protein interactions needed for tagging microtubule ends. Importantly, length-dependent microtubule plus-end-tagging by PRC1 is also observed in dividing cells. Our findings suggest how biochemically similar microtubules can be differentially marked, based on length, for selective regulation during the formation of specialized arrays, such as those required for cytokinesis.
机译:无错误的细胞分裂取决于纺锤体中区的组装,纺锤体中区是后期阶段分离染色体之间出现的重叠微管的专门阵列。从中期纺锤体中选择动态微管子集并将其组织成稳定的中区阵列的分子机理了解甚少。在这里,我们显示了使用体外重组测定法,PRC1和kinesin-4(中区组装所需的两种与微管相关的蛋白质)可以标记微管的正末端。值得注意的是,这些标签的尺寸与灯丝长度成正比。我们确定PRC1同型二聚体的晶体结构,并绘制标签微管末端所需的蛋白质-蛋白质相互作用。重要的是,在分裂细胞中也观察到PRC1的长度依赖性微管加末端标记。我们的发现表明,如何根据长度对生化相似的微管进行差异标记,以在形成专门阵列(例如胞质分裂所需的阵列)期间进行选择性调节。

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