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Proximity-based activation of AURORA A by MPS1 potentiates error correction

Nelson Leça, Francisca Barbosa, Sergi Rodriguez-Calado, Arianna Esposito Verza, Margarida Moura, Paulo D. Pedroso, Inês Pinto, Elena Artes, Tanja Bange, Claudio E. Sunkel, Marin Barisic, Thomas J. Maresca, Carlos Conde

Research output: Contribution to journalJournal articleResearchpeer-review

7 Citations (Scopus)

Abstract

Faithful cell division relies on mitotic chromosomes becoming bioriented with each pair of sister kinetochores bound to microtubules oriented toward opposing spindle poles. Erroneous kinetochore-microtubule attachments often form during early mitosis but are destabilized through the phosphorylation of outer kinetochore proteins by centromeric AURORA B kinase (ABK) and centrosomal AURORA A kinase (AAK), thus allowing for re-establishment of attachments until biorientation is achieved.1,2,3,4,5,6,7,8,9 MPS1-mediated phosphorylation of NDC80 has also been shown to directly weaken the kinetochore-microtubule interface in yeast.10 In human cells, MPS1 has been proposed to transiently accumulate at end-on attached kinetochores11 and phosphorylate SKA3 to promote microtubule release.12 Whether MPS1 directly targets NDC80 and/or promotes the activity of AURORA kinases in metazoans remains unclear. Here, we report a novel mechanism involving communication between kinetochores and centrosomes, wherein MPS1 acts upstream of AAK to promote error correction. MPS1 on pole-proximal kinetochores phosphorylates the C-lobe of AAK, thereby increasing its activation at centrosomes. This proximity-based activation ensures the establishment of a robust AAK activity gradient that locally destabilizes mal-oriented kinetochores near spindle poles. Accordingly, MPS1 depletion from Drosophila cells causes severe chromosome misalignment and erroneous kinetochore-microtubule attachments, which can be rescued by tethering either MPS1 or constitutively active AAK mutants to centrosomes. Proximity-based activation of AAK by MPS1 also occurs in human cells to promote AAK-mediated phosphorylation of the NDC80 N-terminal tail. These findings uncover an MPS1-AAK crosstalk that is required for efficient error correction, showcasing the ability of kinetochores to modulate centrosome outputs to ensure proper chromosome segregation.
Original languageEnglish
JournalCurrent Biology
Volume35
Issue number8
Pages (from-to)1935-1947.e8
Number of pages14
ISSN0960-9822
DOIs
Publication statusPublished - 2025

Keywords

  • AURORA A
  • cell division
  • centrosome
  • error correction
  • kinetochore
  • mitosis
  • MPS1

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