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首页> 外文期刊>EMBO reports >Plk1 protects kinetochore-centromere architecture against microtubule pulling forces
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Plk1 protects kinetochore-centromere architecture against microtubule pulling forces

机译:PLK1保护Kinetochore-Centromere建筑对微管拉动力

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摘要

During mitosis, sister chromatids attach to microtubules which generate 700 pN pulling force focused on the centromere. We report that chromatin-localized signals generated by Polo-like kinase 1 (Plk1) maintain the integrity of the kinetochore and centromere against this force. Without sufficient Plk1 activity, chromosomes become misaligned after normal condensation and congression. These chromosomes are silent to the mitotic checkpoint, and many lag and mis-segregate in anaphase. Their centromeres and kinetochores lack CENP-A, CENP-C, CENP-T, Hec1, Nuf2, and Knl1; however, CENP-B is retained. CENP-A loss occurs coincident with secondary misalignment and anaphase onset. This disruption occurs asymmetrically prior to anaphase and requires tension generated by microtubules. Mechanistically, centromeres highly recruit PICH DNA helicase and PICH depletion restores kinetochore disruption in pre-anaphase cells. Furthermore, anaphase defects are significantly reduced by tethering Plk1 to chromatin, including H2B, and INCENP, but not to CENP-A. Taken as a whole, this demonstrates that Plk1 signals are crucial for stabilizing centromeric architecture against tension.
机译:在有丝分裂期间,乳蛋白酶染色体连接到微管,其产生700pn拉动力集中在厘米上。我们报告了通过Polo样激酶1(PLK1)产生的染色质局部化信号保持了KINETOCHORE和CEMROMERE对抗该力的完整性。没有足够的PLK1活性,染色体在正常的冷凝和国会后变得错位。这些染色体沉默于有丝分裂检查点,并且在后脱离的许多滞后和误导。他们的Centromeres和Kinetochores缺少CENP-A,CENP-C,CENP-T,HEC1,NUF2和KNL1;但是,保留了CENP-B。 CENP-A损失与次级错位和后发病吻合一致。这种破坏发生在后期之前不对称并且需要通过微管产生的张力。机械地,Centromeres高度募集PICH DNA Helicase,PICH耗尽恢复了预先染色细胞中的Kinetochore中断。此外,通过将PLK1束到染色质目,包括H 2-A和INCENP,但不为CENP-A而显着降低了后期缺陷。作为一个整体,这表明PLK1信号对于稳定张力的焦化架构是至关重要的。

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