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Updated: Jun 18, 2026

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Checkpoint kinase 1 modulates sensitivity to cisplatin after spindle checkpoint activation in SW620 cells
A Peralta-Sastre1, C Manguan-Garcia, A de Luis
1Instituto de Investigaciones Biomédicas de Madrid CSIC/UAM, Unidad de Oncología Translacional UAM-LaPaz, Arturo Duperier 4, Madrid, Spain.
Abstract:
Aneuploidy is a common feature of tumours that arise by errors in chromosome segregation during mitosis. The aim of this study was to evaluate possible signaling pathways involved in sensitization to chemotherapy in cells with chromosomal instability. We designed a screen using the fission yeast Squizossaccharomyces pombe, to isolate strains showing a phenotype of chromosome mis-segregation and higher sensitivity to the antitumoral drug Bleomycin. We examined differences in gene expression using a comparative analysis of genome-wide expression of the wild type strain and one of the mutants. The results revealed a set of genes involved in cell cycle control, including Mad3/BubR1 and Chk1. We then studied the levels of these two proteins in colorectal cancer human cell lines with different genomic content. Among these, SW620 cells showed higher BubR1 and Chk1 mRNA levels than control cells under normal conditions. Since Chk1 is required for both S and G2/M checkpoints, and the microtubule-destabilizing agent, nocodazole induces mitotic arrest, we attempted to investigate the potential anticancer effects of nocodazole in combination with cisplatin. These studies showed that SW620 cells undergo synergistic cell death after spindle checkpoint activation followed by cisplatin treatment, suggesting a role of Chk1 in this checkpoint, very likely dependent on BubR1 protein. Importantly, Chk1-depleted SW620 cells lost this synergistic effect. In summary, we propose that Chk1 could be a biomarker predictive of the efficacy of chemotherapy across different types of tumors with aneuploidy. These findings may be potentially very useful for the stratification of patients for treatment.
Insights
Chromosomal instability in tumors can be targeted with chemotherapy. This study identifies Chk1 as a potential biomarker for predicting chemotherapy efficacy in aneuploid cancers.
Area of Science:
- Cell Biology
- Genetics
- Cancer Research
Background:
- Aneuploidy, common in tumors, arises from mitotic errors.
- Understanding pathways that sensitize chromosomally unstable cells to chemotherapy is crucial.
Purpose of the Study:
- To identify signaling pathways involved in chemotherapy sensitization in aneuploid cells.
- To evaluate the potential of Chk1 as a predictive biomarker for chemotherapy efficacy.
Main Methods:
- Utilized fission yeast (S. pombe) for screening chromosome mis-segregation and drug sensitivity.
- Performed comparative genome-wide expression analysis.
- Investigated protein and mRNA levels of BubR1 and Chk1 in human colorectal cancer cell lines.
- Examined synergistic effects of nocodazole and cisplatin in SW620 cells.
Main Results:
- Identified cell cycle control genes, including Mad3/BubR1 and Chk1, in yeast models.
- SW620 cells exhibited elevated BubR1 and Chk1 mRNA levels.
- Nocodazole and cisplatin combination induced synergistic cell death in SW620 cells, dependent on Chk1.
- Chk1 depletion abolished the synergistic cell death effect.
Conclusions:
- Chk1 plays a critical role in the synergistic cell death induced by spindle checkpoint activation and cisplatin treatment.
- Chk1 may serve as a predictive biomarker for chemotherapy efficacy in aneuploid tumors.
- Findings support patient stratification for cancer treatment based on Chk1 levels.
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