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January 16, 2026Nucleic Acids Research0 citationsOpen Access

Linking kinetochore attachment to checkpoint control: the role of Aurora B in BubR1 acetylation

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SCSiyoung ChoiHPHaemin ParkSKS. Samuel Kim

Key Points

  • To investigate the role of Aurora B kinase in the phosphorylation and subsequent acetylation of BubR1 and its impact on mitotic checkpoint integrity.
  • Investigated Aurora B-mediated phosphorylation of BubR1
  • Characterized BubR1 acetylation via structured illumination microscopy
  • Examined effects of CENP-E and BubR1 acetylation on fibrous corona maintenance
  • Assessed the impact of K250 acetylation-mimetic BubR1 in phosphorylation-deficient mutants
  • BubR1 acetylation is crucial for the stability of the mitotic checkpoint complex (MCC)
  • Disruption of Aurora B phosphorylation impairs BubR1 acetylation and fibrous corona maintenance
  • Expressing acetylation-mimetic BubR1 rescues defects in checkpoint activity caused by phosphorylation loss

Abstract

Abstract We report that Aurora B kinase-mediated phosphorylation is essential for BubR1 acetylation at lysine 250 (K250), a modification required to preserve the mitotic checkpoint complex (MCC) and ensure accurate chromosome segregation. This Aurora B–BubR1 acetylation axis provides a mechanistic explanation for how kinetochore–microtubule attachment status is transduced to spindle assembly checkpoint (SAC) activity. Aurora B phosphorylates BubR1 at Serine 39 (and Ser16) in response to unattachment, and this phosphorylation is indispensable for subsequent K250 acetylation. Using a monoclonal anti-AcK250 antibody in structured illumination microscopy, we demonstrate that BubR1 acetylation sustains the fibrous corona, as shown by the crescent-shaped expansion of ZW10 and MAD2 surrounding kinetochores. Loss of either CENP-E or BubR1 acetylation abolishes fibrous corona, indicating that the interaction between acetylated BubR1 and CENP-E connects lateral attachment with the prevention of premature corona disassembly until proper end-on attachment is achieved. Disruption of Aurora B-mediated phosphorylation compromises K250 acetylation, fibrous corona maintenance, and MCC stability, whereas expression of a K250 acetylation-mimetic BubR1 rescues these defects in S16A/S39A phosphorylation-deficient mutants. Together, our findings establish a phosphorylation–acetylation cascade in BubR1 as a critical SAC signaling pathway and identify this axis as a promising therapeutic target in cancers driven by chromosomal instability.

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Cite This Study

Choi et al. (2025) studied this question.

synapsesocial.com/papers/6969d4dc940543b977709bcfhttps://doi.org/10.1093/nar/gkaf1517
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