染色体错排会导致纺锤体定位缺陷。

Chromosome misalignments induce spindle-positioning defects.

作者信息

Tame Mihoko A, Raaijmakers Jonne A, Afanasyev Pavel, Medema René H

机构信息

Department of Cell Biology and Cancer Genomics Center, The Netherlands Cancer Institute, Amsterdam, The Netherlands.

The Maastricht Multimodal Molecular Imaging Institute, Maastricht University, Maastricht, The Netherlands.

出版信息

EMBO Rep. 2016 Mar;17(3):317-25. doi: 10.15252/embr.201541143. Epub 2016 Feb 4.

Abstract

Cortical pulling forces on astral microtubules are essential to position the spindle. These forces are generated by cortical dynein, a minus-end directed motor. Previously, another dynein regulator termed Spindly was proposed to regulate dynein-dependent spindle positioning. However, the mechanism of how Spindly regulates spindle positioning has remained elusive. Here, we find that the misalignment of chromosomes caused by Spindly depletion is directly provoking spindle misorientation. Chromosome misalignments induced by CLIP-170 or CENP-E depletion or by noscapine treatment are similarly accompanied by severe spindle-positioning defects. We find that cortical LGN is actively displaced from the cortex when misaligned chromosomes are in close proximity. Preventing the KT recruitment of Plk1 by the depletion of PBIP1 rescues cortical LGN enrichment near misaligned chromosomes and re-establishes proper spindle orientation. Hence, KT-enriched Plk1 is responsible for the negative regulation of cortical LGN localization. In summary, we uncovered a compelling molecular link between chromosome alignment and spindle orientation defects, both of which are implicated in tumorigenesis.

摘要

星状微管上的皮层拉力对于纺锤体定位至关重要。这些力由皮层动力蛋白产生,皮层动力蛋白是一种向负极移动的马达蛋白。此前,另一种名为Spindly的动力蛋白调节因子被认为可调节依赖动力蛋白的纺锤体定位。然而,Spindly调节纺锤体定位的机制仍不清楚。在此,我们发现,Spindly缺失导致的染色体排列紊乱直接引发纺锤体方向错误。由CLIP - 170或CENP - E缺失或诺司卡品处理诱导的染色体排列紊乱同样伴有严重的纺锤体定位缺陷。我们发现,当排列紊乱的染色体靠近时,皮层LGN会从皮层中被主动移除。通过缺失PBIP1来阻止Plk1在动粒处的募集,可挽救排列紊乱染色体附近皮层LGN的富集,并重新建立正确的纺锤体方向。因此,动粒富集的Plk1对皮层LGN定位起负调控作用。总之,我们揭示了染色体排列和纺锤体方向缺陷之间令人信服的分子联系,这两者都与肿瘤发生有关。

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