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CDK1-CCNB1 通过使 MPS1 着丝粒定位来创建一个有丝分裂检查点允许的状态。

CDK1-CCNB1 creates a spindle checkpoint-permissive state by enabling MPS1 kinetochore localization.

机构信息

Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford, England, UK.

Department of Biochemistry, University of Oxford, South Parks Road, Oxford, England, UK.

出版信息

J Cell Biol. 2019 Apr 1;218(4):1182-1199. doi: 10.1083/jcb.201808014. Epub 2019 Jan 23.

Abstract

Spindle checkpoint signaling is initiated by recruitment of the kinase MPS1 to unattached kinetochores during mitosis. We show that CDK1-CCNB1 and a counteracting phosphatase PP2A-B55 regulate the engagement of human MPS1 with unattached kinetochores by controlling the phosphorylation status of S281 in the kinetochore-binding domain. This regulation is essential for checkpoint signaling, since MPS1 is not recruited to unattached kinetochores and fails to support the recruitment of other checkpoint proteins. Directly tethering MPS1 to the kinetochore protein Mis12 bypasses this regulation and hence the requirement for S281 phosphorylation in checkpoint signaling. At the metaphase-anaphase transition, MPS1 S281 dephosphorylation is delayed because PP2A-B55 is negatively regulated by CDK1-CCNB1 and only becomes fully active once CCNB1 concentration falls below a characteristic threshold. This mechanism prolongs the checkpoint-responsive period when MPS1 can localize to kinetochores and enables a response to late-stage spindle defects. By acting together, CDK1-CCNB1 and PP2A-B55 thus create a spindle checkpoint-permissive state and ensure the fidelity of mitosis.

摘要

纺锤体检查点信号的启动是通过在有丝分裂过程中激酶 MPS1 招募到未连接的动粒来实现的。我们表明,CDK1-CCNB1 和拮抗磷酸酶 PP2A-B55 通过控制动粒结合域中 S281 的磷酸化状态来调节人 MPS1 与未连接的动粒的结合。这种调节对于检查点信号至关重要,因为 MPS1 不会被招募到未连接的动粒上,并且无法支持其他检查点蛋白的招募。直接将 MPS1 固定在动粒蛋白 Mis12 上可以绕过这种调节,因此不需要 S281 磷酸化来进行检查点信号传递。在中期-后期过渡期间,MPS1 S281 的去磷酸化被延迟,因为 PP2A-B55 受到 CDK1-CCNB1 的负调控,并且只有在 CCNB1 浓度下降到一个特征阈值以下时才会完全激活。这种机制延长了 MPS1 可以定位到动粒的检查点反应期,并使对晚期纺锤体缺陷做出反应成为可能。因此,CDK1-CCNB1 和 PP2A-B55 共同作用,创造了一个允许纺锤体检查点的状态,并确保了有丝分裂的保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f24/6446832/5c8c86741f45/JCB_201808014_Fig1.jpg

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