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Published on: September 18, 2013
Crizotinib Has Preclinical Efficacy in Philadelphia-Negative Myeloproliferative Neoplasms
Lindsay M Gurska1, Rachel Okabe1, Alexandra Schurer1
1Department of Cell Biology, Albert Einstein College of Medicine, Bronx, New York.
Purpose:
The Philadelphia chromosome-negative myeloproliferative neoplasms (MPN) polycythemia vera, essential thrombocythemia, and primary myelofibrosis are characterized by JAK/STAT pathway activation. JAK inhibitors are approved for MPN treatment, but persistence has been observed, due to JAK/STAT reactivation.
Experimental Design:
Using MPN patient samples, JAK2-mutated cell lines, and MPN mouse models, we examined both the efficacy and mechanism by which crizotinib, the ALK/MET/RON/ROS1 inhibitor approved for the treatment of non-small cell lung cancer, alters MPN cell proliferation and JAK/STAT activation.
Results:
We found that crizotinib suppresses proliferation and activation of JAK/STAT signaling, and decreases the disease burden in the JAK2V617F mouse model of MPN. Furthermore, we found that crizotinib could overcome JAK inhibitor persistence to ruxolitinib. Interestingly, phosphorylation of the crizotinib target RON kinase was enhanced in ruxolitinib-persistent cells. We show that phospho-JAK2 and phospho-RON can physically interact to sustain JAK/STAT signaling, and that the combination of crizotinib and ruxolitinib disrupts this interaction. Furthermore, RON knockdown suppresses proliferation and activation of JAK/STAT signaling in JAK2-mutated cells, and RON deletion in a JAK2V617F mouse MPN model decreases the disease burden. We also observed RON hyperactivation in MPN patient cells, suggesting that RON may be an important target of crizotinib in MPN.
Conclusions:
In summary, we demonstrate that crizotinib has preclinical efficacy in MPN patient cells, JAK2-mutated cell lines, and a JAK2-mutated mouse model, and that the combination of crizotinib with JAK inhibitors suppresses JAK inhibitor persistence. Our work suggests that crizotinib should be investigated for the treatment of patients with MPN.
Insights
Crizotinib shows preclinical efficacy in myeloproliferative neoplasms (MPN) by suppressing JAK/STAT signaling and overcoming resistance to JAK inhibitors. This suggests crizotinib as a potential therapeutic agent for MPN treatment.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Philadelphia chromosome-negative myeloproliferative neoplasms (MPN) involve JAK/STAT pathway activation.
- Approved JAK inhibitors face challenges due to JAK/STAT reactivation, leading to treatment persistence.
Purpose of the Study:
- To evaluate crizotinib's efficacy and mechanism in MPN.
- To determine if crizotinib can overcome JAK inhibitor persistence.
Main Methods:
- Utilized MPN patient samples, JAK2-mutated cell lines, and MPN mouse models.
- Assessed crizotinib's impact on MPN cell proliferation and JAK/STAT activation.
- Investigated the interaction between JAK2 and RON kinases.
Main Results:
- Crizotinib suppressed MPN cell proliferation and JAK/STAT signaling, reducing disease burden in a JAK2V617F mouse model.
- Crizotinib overcame ruxolitinib resistance by disrupting the phospho-JAK2 and phospho-RON interaction.
- RON kinase was identified as a potential therapeutic target in MPN.
Conclusions:
- Crizotinib demonstrates preclinical efficacy in MPN models and overcomes JAK inhibitor persistence.
- Combination therapy with crizotinib and JAK inhibitors warrants further investigation for MPN treatment.
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