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Generation and Isolation of Cell Cycle-arrested Cells with Complex Karyotypes
Published on: April 13, 2018
Mitotic Checkpoint Kinase Mps1 Has a Role in Normal Physiology which Impacts Clinical Utility
Ricardo Martinez1, Alessandra Blasina1, Jill F Hallin1
1Oncology Research Unit, Pfizer Worldwide Research and Development, 10724 Science Center Drive, San Diego, CA, 92121, United States of America.
Abstract:
Cell cycle checkpoint intervention is an effective therapeutic strategy for cancer when applied to patients predisposed to respond and the treatment is well-tolerated. A critical cell cycle process that could be targeted is the mitotic checkpoint (spindle assembly checkpoint) which governs the metaphase-to-anaphase transition and insures proper chromosomal segregation. The mitotic checkpoint kinase Mps1 was selected to explore whether enhancement in genomic instability is a viable therapeutic strategy. The basal-a subset of triple-negative breast cancer was chosen as a model system because it has a higher incidence of chromosomal instability and Mps1 expression is up-regulated. Depletion of Mps1 reduces tumor cell viability relative to normal cells. Highly selective, extremely potent Mps1 kinase inhibitors were created to investigate the roles of Mps1 catalytic activity in tumor cells and normal physiology (PF-7006, PF-3837; Ki<0.5 nM; cellular IC50 2-6 nM). Treatment of tumor cells in vitro with PF-7006 modulates expected Mps1-dependent biology as demonstrated by molecular and phenotypic measures (reduced pHH3-Ser10 levels, shorter duration of mitosis, micro-nucleation, and apoptosis). Tumor-bearing mice treated with PF-7006 exhibit tumor growth inhibition concomitant with pharmacodynamic modulation of a downstream biomarker (pHH3-Ser10). Unfortunately, efficacy only occurs at drug exposures that cause dose-limiting body weight loss, gastrointestinal toxicities, and neutropenia. Mps1 inhibitor toxicities may be mitigated by inducing G1 cell cycle arrest in Rb1-competent cells with the cyclin-dependent kinase-4/6 inhibitor palbociclib. Using an isogenic cellular model system, PF-7006 is shown to be selectively cytotoxic to Rb1-deficient cells relative to Rb1-competent cells (also a measure of kinase selectivity). Human bone marrow cells pretreated with palbociclib have decreased PF-7006-dependent apoptosis relative to cells without palbociclib pretreatment. Collectively, this study raises a concern that single agent therapies inhibiting Mps1 will not be well-tolerated clinically but may be when combined with a selective CDK4/6 drug.
Insights
Targeting the mitotic checkpoint kinase Mps1 shows promise for cancer therapy, particularly in triple-negative breast cancer. However, Mps1 inhibitors cause toxicity, suggesting combination therapy with CDK4/6 inhibitors may improve tolerability.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Cell cycle checkpoint intervention is a key cancer therapeutic strategy.
- The mitotic checkpoint (spindle assembly checkpoint) regulates chromosome segregation and is a potential therapeutic target.
- Mps1 kinase is upregulated in basal-a triple-negative breast cancer, a model system with high genomic instability.
Purpose of the Study:
- To investigate Mps1 kinase as a therapeutic target by exploring the consequences of its inhibition on tumor cells and normal physiology.
- To assess the therapeutic potential of potent Mps1 inhibitors (PF-7006, PF-3837) in triple-negative breast cancer models.
- To evaluate strategies for mitigating Mps1 inhibitor toxicities.
Main Methods:
- Developed highly selective Mps1 kinase inhibitors (PF-7006, PF-3837) with nanomolar potency.
- Treated triple-negative breast cancer cells in vitro and tumor-bearing mice with PF-7006.
- Assessed molecular and phenotypic changes, including pHH3-Ser10 levels, mitosis duration, and apoptosis.
- Utilized an isogenic cellular model to evaluate Rb1-deficiency and Rb1-competency.
- Investigated the combination of Mps1 inhibitors with cyclin-dependent kinase-4/6 (CDK4/6) inhibitors (palbociclib) to mitigate toxicity.
Main Results:
- Mps1 depletion reduced tumor cell viability.
- PF-7006 treatment modulated Mps1-dependent pathways in vitro, leading to reduced pHH3-Ser10, shorter mitosis, micro-nucleation, and apoptosis.
- PF-7006 inhibited tumor growth in mice, with pharmacodynamic evidence of target engagement.
- Mps1 inhibition caused dose-limiting toxicities including weight loss, gastrointestinal issues, and neutropenia.
- PF-7006 demonstrated selective cytotoxicity towards Rb1-deficient cells.
- Pretreatment with palbociclib reduced PF-7006-induced apoptosis in human bone marrow cells.
Conclusions:
- Single-agent Mps1 inhibition may not be clinically well-tolerated due to dose-limiting toxicities.
- Combination therapy with CDK4/6 inhibitors may offer a strategy to mitigate Mps1 inhibitor toxicities and improve clinical tolerability.
- Targeting Mps1 remains a promising avenue for cancer therapy, especially when combined with agents that modulate cell cycle arrest.

