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C. elegans chromosomes connect to centrosomes by anchoring into the spindle network

机译:秀丽隐杆线虫染色体通过锚定到纺锤体网络而连接到中心体

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摘要

The mitotic spindle ensures the faithful segregation of chromosomes. Here we combine the first large-scale serial electron tomography of whole mitotic spindles in early C. elegans embryos with live-cell imaging to reconstruct all microtubules in 3D and identify their plus-and minus-ends. We classify them as kinetochore (KMTs), spindle (SMTs) or astral microtubules (AMTs) according to their positions, and quantify distinct properties of each class. While our light microscopy and mutant studies show that microtubules are nucleated from the centrosomes, we find only a few KMTs directly connected to the centrosomes. Indeed, by quantitatively analysing several models of microtubule growth, we conclude that minus-ends of KMTs have selectively detached and depolymerized from the centrosome. In toto, our results show that the connection between centrosomes and chromosomes is mediated by an anchoring into the entire spindle network and that any direct connections through KMTs are few and likely very transient.
机译:有丝分裂纺锤体确保忠实的染色体分离。在这里,我们结合了线虫早期胚胎中整个有丝分裂纺锤体的首次大规模串行电子层析成像技术与活细胞成像技术,以3D方式重建了所有微管,并确定了它们的正负两端。根据它们的位置,我们将它们分为动粒(KMT),纺锤体(SMT)或星状微管(AMT),并量化每个类别的不同属性。虽然我们的光学显微镜和突变体研究表明微管是由中心体成核的,但我们发现只有少数KMT与中心体直接相连。实际上,通过定量分析微管生长的几种模型,我们得出结论,KMT的负端已选择性地从中心体分离和解聚。总而言之,我们的结果表明,中心体和染色体之间的连接是通过锚定到整个纺锤体网络中来进行的,通过KMT进行的任何直接连接都很少,而且可能非常短暂。

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