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Cell Death Associated with Abnormal Mitosis Observed by Confocal Imaging in Live Cancer Cells
Published on: August 21, 2013
The SKP2-p27 axis defines susceptibility to cell death upon CHK1 inhibition
Michael Lohmüller1, Bernhard F Roeck1, Tamas G Szabo1
1Institute for Developmental Immunology, Biocenter, Medical University of Innsbruck, Austria.
Abstract:
Checkpoint kinase 1 (CHK1; encoded by CHEK1) is an essential gene that monitors DNA replication fidelity and prevents mitotic entry in the presence of under-replicated DNA or exogenous DNA damage. Cancer cells deficient in p53 tumor suppressor function reportedly develop a strong dependency on CHK1 for proper cell cycle progression and maintenance of genome integrity, sparking interest in developing kinase inhibitors. Pharmacological inhibition of CHK1 triggers B-Cell CLL/Lymphoma 2 (BCL2)-regulated cell death in malignant cells largely independently of p53, and has been suggested to kill p53-deficient cancer cells even more effectively. Next to p53 status, our knowledge about factors predicting cancer cell responsiveness to CHK1 inhibitors is limited. Here, we conducted a genome-wide CRISPR/Cas9-based loss-of-function screen to identify genes defining sensitivity to chemical CHK1 inhibitors. Next to the proapoptotic BCL2 family member, BCL2 Binding Component 3 (BBC3; also known as PUMA), the F-box protein S-phase Kinase-Associated Protein 2 (SKP2) was validated to tune the cellular response to CHK1 inhibition. SKP2 is best known for degradation of the Cyclin-dependent Kinase Inhibitor 1B (CDKN1B; also known as p27), thereby promoting G1-S transition and cell cycle progression in response to mitogens. Loss of SKP2 resulted in the predicted increase in p27 protein levels, coinciding with reduced DNA damage upon CHK1-inhibitor treatment and reduced cell death in S-phase. Conversely, overexpression of SKP2, which consequently results in reduced p27 protein levels, enhanced cell death susceptibility to CHK1 inhibition. We propose that assessing SKP2 and p27 expression levels in human malignancies will help to predict the responsiveness to CHK1-inhibitor treatment.
Insights
Checkpoint kinase 1 (CHK1) inhibitors induce cancer cell death, particularly in p53-deficient cells. S-phase Kinase-Associated Protein 2 (SKP2) levels predict treatment response, with high SKP2 enhancing cell death susceptibility.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Checkpoint kinase 1 (CHK1) is crucial for DNA replication fidelity and preventing mitotic entry during DNA damage.
- Cancer cells lacking p53 tumor suppressor function exhibit a dependency on CHK1, making CHK1 inhibitors a promising therapeutic strategy.
- CHK1 inhibition induces B-Cell CLL/Lymphoma 2 (BCL2)-regulated cell death, especially in p53-deficient cancers, but predictors of response are limited.
Purpose of the Study:
- To identify genes that determine cancer cell sensitivity to chemical CHK1 inhibitors using a genome-wide screen.
- To investigate the role of S-phase Kinase-Associated Protein 2 (SKP2) in mediating cellular responses to CHK1 inhibition.
Main Methods:
- Genome-wide CRISPR/Cas9 loss-of-function screen to identify sensitivity genes.
- Validation of identified genes, including SKP2, in modulating cellular response to CHK1 inhibitors.
- Analysis of SKP2 and its target, Cyclin-dependent Kinase Inhibitor 1B (CDKN1B/p27), in relation to CHK1 inhibition-induced cell death.
Main Results:
- The screen identified BCL2 Binding Component 3 (BBC3/PUMA) and SKP2 as key regulators of CHK1 inhibitor sensitivity.
- Loss of SKP2 led to increased p27 levels, reduced DNA damage, and decreased cell death upon CHK1 inhibition.
- Overexpression of SKP2, resulting in lower p27 levels, enhanced susceptibility to CHK1 inhibitor-induced cell death.
Conclusions:
- SKP2 plays a critical role in regulating cancer cell death in response to CHK1 inhibition.
- SKP2 promotes cell death by promoting the degradation of p27, thereby sensitizing cells to CHK1 inhibition.
- Assessing SKP2 and p27 expression levels may predict patient responsiveness to CHK1-inhibitor therapies in malignancies.
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