MAD1-dependent recruitment of CDK1-CCNB1 to kinetochores promotes spindle checkpoint signaling

Author:

Alfonso-Pérez Tatiana1,Hayward Daniel2,Holder James1,Gruneberg Ulrike2ORCID,Barr Francis A.1ORCID

Affiliation:

1. Department of Biochemistry, University of Oxford, Oxford, UK

2. Sir William Dunn School of Pathology, University of Oxford, Oxford, UK

Abstract

Cyclin B–dependent kinase (CDK1-CCNB1) promotes entry into mitosis. Additionally, it inhibits mitotic exit by activating the spindle checkpoint. This latter role is mediated through phosphorylation of the checkpoint kinase MPS1 and other spindle checkpoint proteins. We find that CDK1-CCNB1 localizes to unattached kinetochores and like MPS1 is lost from these structures upon microtubule attachment. This suggests that CDK1-CCNB1 is an integral component and not only an upstream regulator of the spindle checkpoint pathway. Complementary proteomic and cell biological analysis demonstrate that the spindle checkpoint protein MAD1 is one of the major components of CCNB1 complexes, and that CCNB1 is recruited to unattached kinetochores in an MPS1-dependent fashion through interaction with the first 100 amino acids of MAD1. This MPS1 and MAD1-dependent pool of CDK1-CCNB1 creates a positive feedback loop necessary for timely recruitment of MPS1 to kinetochores during mitotic entry and for sustained spindle checkpoint arrest. CDK1-CCNB1 is therefore an integral component of the spindle checkpoint, ensuring the fidelity of mitosis.

Funder

Biotechnology and Biological Sciences Research Council

Cancer Research UK

Wellcome Trust

Medical Research Council

Publisher

Rockefeller University Press

Subject

Cell Biology

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