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Updated: Jun 16, 2026

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
Identification of Myb-binding protein 1A (MYBBP1A) as a novel substrate for aurora B kinase
Claudia Perrera1, Riccardo Colombo, Barbara Valsasina
1Nerviano Medical Sciences, Nerviano 20014 MI, Italy. Claudia.Perrera@nervianoms.com
Abstract:
Aurora kinases are mitotic enzymes involved in centrosome maturation and separation, spindle assembly and stability, and chromosome condensation, segregation, and cytokinesis and represent well known targets for cancer therapy because their deregulation has been linked to tumorigenesis. The availability of suitable markers is of crucial importance to investigate the functions of Auroras and monitor kinase inhibition in in vivo models and in clinical trials. Extending the knowledge on Aurora substrates could help to better understand their biology and could be a source for clinical biomarkers. Using biochemical, mass spectrometric, and cellular approaches, we identified MYBBP1A as a novel Aurora B substrate and serine 1303 as the major phosphorylation site. MYBBP1A is phosphorylated in nocodazole-arrested cells and is dephosphorylated upon Aurora B silencing or by treatment with Danusertib, a small molecule inhibitor of Aurora kinases. Furthermore, we show that MYBBP1A depletion by RNA interference causes mitotic progression delay and spindle assembly defects. MYBBP1A has until now been described as a nucleolar protein, mainly involved in transcriptional regulation. The results presented herein show MYBBP1A as a novel Aurora B kinase substrate and reveal a not yet recognized link of this nucleolar protein to mitosis.
Insights
Researchers identified MYBBP1A as a novel substrate for Aurora B kinase, revealing its crucial role in mitosis. This finding offers potential new biomarkers for monitoring cancer therapy targeting Aurora kinases.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Aurora kinases are critical mitotic enzymes and validated cancer targets.
- Understanding Aurora kinase substrates is key for developing biomarkers and monitoring therapies.
- MYBBP1A was previously known for its role in transcriptional regulation.
Purpose of the Study:
- To identify novel substrates of Aurora B kinase.
- To investigate the role of MYBBP1A in mitosis.
- To explore MYBBP1A as a potential biomarker for Aurora kinase inhibition.
Main Methods:
- Biochemical assays
- Mass spectrometry
- Cellular approaches including RNA interference and drug treatment (Danusertib)
Main Results:
- MYBBP1A identified as a novel substrate of Aurora B kinase.
- Serine 1303 is the primary phosphorylation site on MYBBP1A.
- MYBBP1A depletion causes mitotic delay and spindle assembly defects.
- MYBBP1A phosphorylation is regulated by Aurora B activity.
Conclusions:
- MYBBP1A is a novel Aurora B kinase substrate involved in mitosis.
- This study links the nucleolar protein MYBBP1A to mitotic processes.
- MYBBP1A represents a potential target and biomarker in cancer therapy.

