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极光激酶B可防止动粒过早移除纺锤体组装检查点蛋白:极光激酶B在有丝分裂中的关键作用。

Aurora B prevents premature removal of spindle assembly checkpoint proteins from the kinetochore: A key role for Aurora B in mitosis.

作者信息

Gurden Mark D, Anderhub Simon J, Faisal Amir, Linardopoulos Spiros

机构信息

Breast Cancer Now, Division of Breast Cancer Research, The Institute of Cancer Research, London, United Kingdom.

Cancer Research UK Cancer Therapeutics Unit, Division of Cancer Therapeutics, The Institute of Cancer Research, London, United Kingdom.

出版信息

Oncotarget. 2016 Jul 18;9(28):19525-19542. doi: 10.18632/oncotarget.10657. eCollection 2018 Apr 13.

Abstract

Accurate chromosome segregation is dependent on the spindle assembly checkpoint (SAC). In current models, the key direct role of Aurora B in the SAC has been suggested to be to promote rapid kinetochore localisation of MPS1, allowing MPS1 to generate the checkpoint signal. However, Aurora B is also thought to play an indirect role in the SAC through the destabilisation of kinetochore-microtubule (KT-MT) attachments. Here, we demonstrate that Aurora B activity is not required for the kinetochore recruitment of the majority of SAC proteins. More importantly, we show that the primary role of Aurora B in the SAC is to prevent the premature removal of SAC proteins from the kinetochore, which is strictly dependent on KT-MT interactions. Moreover, in the presence of KT-MT interactions, Aurora B inhibition silences a persistent SAC induced by tethering MPS1 to the kinetochore. This explains the highly synergistic interaction between Aurora B and MPS1 inhibitors to override the SAC, which is lost when cells are pre-arrested in nocodazole. Furthermore, we show that Aurora B and MPS1 inhibitors synergistically kill a panel of breast and colon cancer cell lines, including cells that are otherwise insensitive to Aurora B inhibitors alone. These data demonstrate that the major role of Aurora B in SAC is to prevent the removal of SAC proteins from tensionless kinetochores, thus inhibiting premature SAC silencing, and highlights a therapeutic strategy through combination of Aurora B and MPS1 inhibitors.

摘要

准确的染色体分离依赖于纺锤体组装检查点(SAC)。在当前模型中,Aurora B在SAC中的关键直接作用被认为是促进MPS1在动粒上的快速定位,使MPS1能够产生检查点信号。然而,Aurora B也被认为通过破坏动粒-微管(KT-MT)附着在SAC中发挥间接作用。在这里,我们证明大多数SAC蛋白在动粒上的募集并不需要Aurora B的活性。更重要的是,我们表明Aurora B在SAC中的主要作用是防止SAC蛋白从动粒上过早去除,这严格依赖于KT-MT相互作用。此外,在存在KT-MT相互作用的情况下,抑制Aurora B可使通过将MPS1拴系到动粒而诱导的持续SAC沉默。这解释了Aurora B和MPS1抑制剂之间高度协同的相互作用以克服SAC,而当细胞在诺考达唑中预阻滞时这种协同作用会丧失。此外,我们表明Aurora B和MPS1抑制剂协同杀死一组乳腺癌和结肠癌细胞系,包括那些单独对Aurora B抑制剂不敏感的细胞。这些数据表明Aurora B在SAC中的主要作用是防止SAC蛋白从无张力的动粒上被去除,从而抑制SAC过早沉默,并突出了一种通过联合使用Aurora B和MPS抑制剂的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f515/5929406/7734b1b41ed7/oncotarget-09-19525-g001.jpg

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