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Updated: Apr 30, 2026

Evaluation of the Spindle Assembly Checkpoint Integrity in Mouse Oocytes
Published on: September 13, 2022
Spindle assembly checkpoint protein expression correlates with cellular proliferation and shorter time to recurrence
Barbara McGrogan1, Sine Phelan2, Patricia Fitzpatrick3
1UCD School of Medicine and Medical Science, University College Dublin, UCD, Belfield, Dublin 4, Ireland; UCD Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Belfield, Dublin 4, Ireland; National Cancer Control Programme, King's Inns House, Dublin 1, Ireland.
Abstract:
Ovarian carcinoma (OC) is the most lethal of the gynecological malignancies, often presenting at an advanced stage. Treatment is hampered by high levels of drug resistance. The taxanes are microtubule stabilizing agents, used as first-line agents in the treatment of OC that exert their apoptotic effects through the spindle assembly checkpoint. BUB1-related protein kinase (BUBR1) and mitotic arrest deficient 2 (MAD2), essential spindle assembly checkpoint components, play a key role in response to taxanes. BUBR1, MAD2, and Ki-67 were assessed on an OC tissue microarray platform representing 72 OC tumors of varying histologic subtypes. Sixty-one of these patients received paclitaxel and platinum agents combined; 11 received platinum alone. Overall survival was available for all 72 patients, whereas recurrence-free survival (RFS) was available for 66 patients. Increased BUBR1 expression was seen in serous carcinomas, compared with other histologies (P = .03). Increased BUBR1 was significantly associated with tumors of advanced stage (P = .05). Increased MAD2 and BUBR1 expression also correlated with increased cellular proliferation (P < .0002 and P = .02, respectively). Reduced MAD2 nuclear intensity was associated with a shorter RFS (P = .03), in ovarian tumors of differing histologic subtype (n = 66). In this subgroup, for those women who received paclitaxel and platinum agents combined (n = 57), reduced MAD2 intensity also identified women with a shorter RFS (P < .007). For the entire cohort of patients, irrespective of histologic subtype or treatment, MAD2 nuclear intensity retained independent significance in a multivariate model, with tumors showing reduced nuclear MAD2 intensity identifying patients with a poorer RFS (P = .05).
Insights
Ovarian cancer patients with reduced mitotic arrest deficient 2 (MAD2) nuclear intensity showed shorter recurrence-free survival, especially when treated with taxanes and platinum agents. This suggests MAD2 is a key prognostic marker for ovarian carcinoma treatment response.
Area of Science:
- Oncology
- Cell Biology
- Molecular Diagnostics
Background:
- Ovarian carcinoma (OC) is a lethal gynecological malignancy with frequent advanced-stage presentation and drug resistance.
- Taxanes are first-line treatments for OC, inducing apoptosis via the spindle assembly checkpoint.
- BUB1-related protein kinase (BUBR1) and mitotic arrest deficient 2 (MAD2) are crucial spindle assembly checkpoint components influencing taxane response.
Purpose of the Study:
- To investigate the role of BUBR1 and MAD2 expression in ovarian carcinoma.
- To correlate BUBR1 and MAD2 levels with tumor characteristics, treatment response, and patient survival.
Main Methods:
- A tissue microarray of 72 OC tumors was analyzed for BUBR1, MAD2, and Ki-67 expression.
- Patients received paclitaxel/platinum or platinum-alone chemotherapy.
- Overall survival and recurrence-free survival (RFS) were assessed.
Main Results:
- Increased BUBR1 expression was associated with serous carcinomas and advanced stage.
- Elevated BUBR1 and MAD2 correlated with increased cellular proliferation.
- Reduced MAD2 nuclear intensity was linked to shorter RFS, particularly in patients receiving combined taxane and platinum therapy.
Conclusions:
- BUBR1 expression is associated with specific OC subtypes and advanced disease.
- MAD2 nuclear intensity is an independent prognostic marker for RFS in ovarian cancer patients.
- Reduced MAD2 intensity predicts poorer outcomes, especially with taxane-based chemotherapy.
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