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The nonmotor adaptor HMMR dampens Eg5-mediated forces to preserve the kinetics and integrity of chromosome segregation

机译:非运动适配器HMMR抑制Eg5介导的力以保持染色体分离的动力学和完整性

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摘要

Mitotic spindle assembly and organization require forces generated by motor proteins. The activity of these motors is regulated by nonmotor adaptor proteins. However, there are limited studies reporting the functional importance of adaptors on the balance of motor forces and the promotion of faithful and timely cell division. Here we show that genomic deletion or small interfering RNA silencing of the nonmotor adaptor Hmmr/HMMR disturbs spindle microtubule organization and bipolar chromosome–kinetochore attachments with a consequent elevated occurrence of aneuploidy. Rescue experiments show a conserved motif in HMMR is required to generate interkinetochore tension and promote anaphase entry. This motif bears high homology with the kinesin Kif15 and is known to interact with TPX2, a spindle assembly factor. We find that HMMR is required to dampen kinesin Eg5-mediated forces through localizing TPX2 and promoting the formation of inhibitory TPX2-Eg5 complexes. In HMMR-silenced cells, K-fiber stability is reduced while the frequency of unattached chromosomes and the time needed for chromosome segregation are both increased. These defects can be alleviated in HMMR-silenced cells with chemical inhibition of Eg5 but not through the silencing of Kif15. Together, our findings indicate that HMMR balances Eg5-­mediated forces to preserve the kinetics and integrity of chromosome segregation.
机译:有丝分裂纺锤体的组装和组织需要运动蛋白产生的力。这些马达的活性由非马达衔接蛋白调节。但是,很少有研究报道适配器在平衡运动力和促进忠实及时的细胞分裂方面的功能重要性。在这里,我们显示非运动适配器Hmmr / HMMR的基因组缺失或小干扰RNA沉默会干扰纺锤体微管组织和双极染色体–线粒体附着,从而导致非整倍性发生率升高。救援实验表明,HMMR中保守的基序是产生跨线粒张力并促进后期进入的必需条件。该基序与驱动蛋白Kif15具有高度同源性,并且已知与纺锤体组装因子TPX2相互作用。我们发现,HMMR需要通过局部化TPX2并促进抑制性TPX2-Eg5复合物的形成来抑制驱动蛋白Eg5介导的力。在HMMR沉默的细胞中,K纤维的稳定性降低,而未附着的染色体的频率和染色体分离所需的时间都增加。这些缺陷可通过化学抑制Eg5而不是通过Kif15沉默而在HMMR沉默的细胞中缓解。在一起,我们的发现表明HMMR平衡Eg5介导的力量,以保持动力学和染色体分离的完整性。

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