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Updated: Jun 29, 2025

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Targeting SRSF2 mutations in leukemia with RKI-1447: A strategy to impair cellular division and nuclear structure
Minhua Su1,2, Tom Fleischer2, Inna Grosheva3
1State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Haihe Laboratory of Cell Ecosystem, Institute of Hematology & Blood Diseases Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin, China.
Abstract:
Spliceosome machinery mutations are common early mutations in myeloid malignancies; however, effective targeted therapies against them are still lacking. In the current study, we used an in vitro high-throughput drug screen among four different isogenic cell lines and identified RKI-1447, a Rho-associated protein kinase inhibitor, as selective cytotoxic effector of SRSF2 mutant cells. RKI-1447 targeted SRSF2 mutated primary human samples in xenografts models. RKI-1447 induced mitotic catastrophe and induced major reorganization of the microtubule system and severe nuclear deformation. Transmission electron microscopy and 3D light microscopy revealed that SRSF2 mutations induce deep nuclear indentation and segmentation that are apparently driven by microtubule-rich cytoplasmic intrusions, which are exacerbated by RKI-1447. The severe nuclear deformation in RKI-1447-treated SRSF2 mutant cells prevents cells from completing mitosis. These findings shed new light on the interplay between microtubules and the nucleus and offers new ways for targeting pre-leukemic SRSF2 mutant cells.
Insights
A novel drug, RKI-1447, effectively targets spliceosome mutations in myeloid malignancies. This Rho-associated protein kinase inhibitor induces cell death by causing severe nuclear deformation in SRSF2-mutant cells.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Spliceosome machinery mutations are frequent in myeloid malignancies.
- Targeted therapies for these mutations remain limited.
Purpose of the Study:
- To identify novel therapeutic agents targeting SRSF2-mutant myeloid malignancies.
- To investigate the mechanism of action of identified compounds.
Main Methods:
- Conducted an in vitro high-throughput drug screen using isogenic cell lines.
- Utilized xenograft models with SRSF2-mutated primary human samples.
- Employed transmission electron microscopy and 3D light microscopy.
Main Results:
- Identified RKI-1447, a Rho-associated protein kinase inhibitor, as selectively cytotoxic to SRSF2-mutant cells.
- RKI-1447 induced mitotic catastrophe and severe nuclear deformation in SRSF2-mutant cells.
- Observed microtubule reorganization and nuclear segmentation exacerbated by RKI-1447.
Conclusions:
- SRSF2 mutations lead to nuclear morphology changes driven by microtubule dynamics.
- RKI-1447 targets these nuclear alterations, preventing mitosis completion in mutant cells.
- Findings offer a new therapeutic strategy for pre-leukemic SRSF2-mutant cells.
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