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Proliferation and Differentiation of Murine Myeloid Precursor 32D/G-CSF-R Cells
Published on: February 21, 2018
Dual specific STAT3/5 degraders effectively block acute myeloid leukemia and natural killer/T cell lymphoma
Daniel Pölöske1,2,3, Helena Sorger1,4, Anna Schönbichler1
1Unit of Functional Cancer Genomics, Institute of Animal Breeding and Genetics, University of Veterinary Medicine Vienna Austria.
Abstract:
The transcription factors STAT3, STAT5A, and STAT5B steer hematopoiesis and immunity, but their enhanced expression and activation promote acute myeloid leukemia (AML) or natural killer/T cell lymphoma (NKCL). Current therapeutic strategies focus on blocking upstream tyrosine kinases to inhibit STAT3/5, but these kinase blockers are not selective against STAT3/5 activation and frequent resistance causes relapse, emphasizing the need for targeted drugs. We evaluated the efficacy of JPX-0700 and JPX-0750 as dual STAT3/5 binding inhibitors promoting protein degradation. JPX-0700/-0750 decreased the mRNA and protein levels of STAT3/5 targets involved in cancer survival, metabolism, and cell cycle progression, exhibiting nanomolar to low micromolar efficacy. They induced cell death and growth arrest in both AML/NKCL cell lines and primary AML patient blasts. We found that both AML/NKCL cells hijack STAT3/5 signaling through either upstream activating mutations in kinases, activating mutations in STAT3, mutational loss of negative STAT regulators, or genetic gains in anti-apoptotic, pro-proliferative, or epigenetic-modifying STAT3/5 targets. This emphasizes a vicious cycle for proliferation and survival through STAT3/5. Both JPX-0700/-0750 treatment reduced leukemic cell growth in human AML or NKCL xenograft mouse models significantly, being well tolerated by mice. Synergistic cell death was induced upon combinatorial use with approved chemotherapeutics in AML/NKCL cells.
Insights
New dual STAT3/5 inhibitors, JPX-0700 and JPX-0750, effectively target acute myeloid leukemia (AML) and NK/T cell lymphoma (NKCL) by promoting protein degradation, offering a promising therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- STAT3, STAT5A, and STAT5B are crucial for hematopoiesis and immunity.
- Aberrant STAT3/5 activation drives acute myeloid leukemia (AML) and NK/T cell lymphoma (NKCL).
- Current therapies targeting upstream kinases for STAT3/5 inhibition lack selectivity and face resistance.
Purpose of the Study:
- To evaluate the efficacy of novel dual STAT3/5 binding inhibitors, JPX-0700 and JPX-0750, promoting protein degradation.
- To investigate the therapeutic potential of JPX-0700/-0750 in AML and NKCL models.
Main Methods:
- Assessed the impact of JPX-0700/-0750 on STAT3/5 target gene and protein expression.
- Evaluated cell death and growth arrest in AML/NKCL cell lines and primary patient samples.
- Tested efficacy in human AML/NKCL xenograft mouse models and in combination with chemotherapeutics.
Main Results:
- JPX-0700/-0750 demonstrated nanomolar to low micromolar efficacy, decreasing STAT3/5 target levels.
- These inhibitors induced significant cell death and growth arrest in AML/NKCL cells and primary blasts.
- Treatment reduced leukemic cell growth in vivo and showed synergistic effects with chemotherapy.
Conclusions:
- AML and NKCL cells exploit STAT3/5 signaling through various mechanisms, creating a proliferative and survival loop.
- JPX-0700/-0750 represent a targeted approach to inhibit STAT3/5, effectively reducing leukemic burden.
- Dual STAT3/5 inhibition via protein degradation is a viable strategy for treating AML and NKCL.
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