Accurate chromosome segregation is controlled by the spindle checkpoint, which senses kinetochore- microtubule attachments and tension across sister kinetochores. An important step in the tension-signaling pathway involves the phosphorylation of an unknown protein by polo-like kinase 1/Xenopus laevis polo-like kinase 1 (Plx1) on kinetochores lacking tension to generate the 3F3/2 phosphoepitope. We report here that the checkpoint protein BubR1 interacts with Plx1 and that phosphorylation of BubR1 by Plx1 generates the 3F3/2 epitope. Formation of the BubR1 3F3/2 epitope by Plx1 requires a prior phosphorylation of BubR1 on Thr 605 by cyclin-dependant kinase 1 (Cdk1). This priming phosphorylation of BubR1 by Cdk1 is required for checkpoint-mediated mitotic arrest and for recruitment of Plx1 and the checkpoint protein Mad2 to unattached kinetochores. Biochemically, formation of the 3F3/2 phosphoepitope by Cdk1 and Plx1 greatly enhances the kinase activity of BubR1. Thus, Cdk1-mediated phosphorylation of BubR1 controls checkpoint arrest and promotes the formation of the kinetochore 3F3/2 epitope.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2080899PMC
http://dx.doi.org/10.1083/jcb.200708044DOI Listing

Publication Analysis

Top Keywords

phosphorylation bubr1
20
3f3/2 epitope
16
bubr1
8
bubr1 controls
8
spindle checkpoint
8
checkpoint arrest
8
formation 3f3/2
8
polo-like kinase
8
3f3/2 phosphoepitope
8
checkpoint protein
8

Similar Publications

Ephexin proteins are guanine nucleotide exchange factors for the Rho GTPases. We reported that Ephexin4 regulates M-phase progression downstream of phosphorylated EphA2, a receptor-type tyrosine kinase, through RhoG activation; however, the regulation of Ephexin4 during M phase remains unknown. In this study, a novel Ephexin4 phosphorylation site was identified at Ser41, exclusively in M phase.

View Article and Find Full Text PDF
Article Synopsis
  • - Plk1 is a crucial kinase that ensures proper cell division by interacting with various proteins, but the binding mechanisms are more complex than previously thought, requiring more research to understand them.
  • - During mitosis, Plk1 interacts with the checkpoint protein BubR1 by phosphorylating specific sites, which enhances its interaction with PP2A/B56, essential for stabilizing kinetochore-microtubule attachments.
  • - The study shows that phosphorylation of BubR1 at T600/T608 by Plk1 is vital for its function; however, modifying BubR1 to increase its affinity for Plk1 and PP2A/B56 can compensate for the need for phosphorylation, highlighting new regulatory mechanisms for mit
View Article and Find Full Text PDF

Background: Metastatic castration-resistant prostate cancer (CRPC), the most refractory prostate cancer, inevitably progresses and becomes unresponsive to hormone therapy, revealing a pressing unmet need for this disease. Novel agents targeting HDAC6 and microtubule dynamics can be a potential anti-CRPC strategy.

Methods: Cell proliferation was examined in CRPC PC-3 and DU-145 cells using sulforhodamine B assay and anchorage-dependent colony formation assay.

View Article and Find Full Text PDF

Downregulation of BUBR1 regulates the proliferation and cell cycle of breast cancer cells and increases the sensitivity of cells to cisplatin.

In Vitro Cell Dev Biol Anim

December 2023

Department of Laboratory Animals, College of Animal Sciences, Jilin University, Changchun City, Jilin, 130062, China.

Article Synopsis
  • Breast cancer (BC) is a significant health issue for women globally, with the spindle assembly checkpoint protein BUBR1 playing a crucial role in cancer development due to its high expression leading to cell cycle disorders.
  • Research revealed that high BUBR1 levels were linked to poor prognosis in BC patients, and knocking down BUBR1 in cancer cells reduced their growth and ability to spread.
  • Additionally, targeting BUBR1 may improve the effectiveness of cisplatin chemotherapy, suggesting it could be a promising therapeutic target for managing breast cancer and overcoming treatment resistance.
View Article and Find Full Text PDF

Faithful chromosome segregation requires correct attachment of kinetochores with the spindle microtubules. Erroneously-attached kinetochores recruit proteins to activate Spindle assembly checkpoint (SAC), which senses the errors and signals cells to delay anaphase progression for error correction. Temporal control of the levels of SAC activating-proteins is critical for checkpoint activation and silencing, but its mechanism is not fully understood.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!