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Selective Inhibition of JAK1 Primes STAT5-Driven Human Leukemia Cells for ATRA-Induced Differentiation
Haley E Ramsey1,2, Kristy Stengel3, James C Pino3,4
1Cancer Biology Program, Vanderbilt University School of Medicine, Nashville, TN, USA.
Background:
All-trans retinoic acid (ATRA), a derivate of vitamin A, has been successfully used as a therapy to induce differentiation in M3 acute promyelocytic leukemia (APML), and has led to marked improvement in outcomes. Previously, attempts to use ATRA in non-APML in the clinic, however, have been underwhelming, likely due to persistent signaling through other oncogenic drivers. Dysregulated JAK/STAT signaling is known to drive several hematologic malignancies, and targeting JAK1 and JAK2 with the JAK1/JAK2 inhibitor ruxolitinib has led to improvement in survival in primary myelofibrosis and alleviation of vasomotor symptoms and splenomegaly in polycythemia vera and myelofibrosis.
Objective:
While dose-dependent anemia and thrombocytopenia limit the use of JAK2 inhibition, selectively targeting JAK1 has been explored as a means to suppress inflammation and STAT-associated pathologies related to neoplastogenesis. The objective of this study is to employ JAK1 inhibition (JAK1i) in the presence of ATRA as a potential therapy in non-M3 acute myeloid leukemia (AML).
Methods:
Efficacy of JAK1i using INCB52793 was assessed by changes in cell cycle and apoptosis in treated AML cell lines. Transcriptomic and proteomic analysis evaluated effects of JAK1i. Synergy between JAK1i+ ATRA was assessed in cell lines in vitro while efficacy in vivo was assessed by tumor reduction in MV-4-11 cell line-derived xenografts.
Results:
Here we describe novel synergistic activity between JAK1i inhibition and ATRA in non-M3 leukemia. Transcriptomic and proteomic analysis confirmed structural and functional changes related to maturation while in vivo combinatory studies revealed significant decreases in leukemic expansion.
Conclusions:
JAK1i+ ATRA lead to decreases in cell cycle followed by myeloid differentiation and cell death in human leukemias. These findings highlight potential uses of ATRA-based differentiation therapy of non-M3 human leukemia.
Insights
Combining JAK1 inhibition with all-trans retinoic acid (ATRA) shows synergistic effects in treating non-M3 acute myeloid leukemia (AML). This novel therapy induces myeloid differentiation and cell death, offering a new approach for leukemia treatment.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- All-trans retinoic acid (ATRA) effectively treats M3 acute promyelocytic leukemia (APML) by inducing differentiation.
- Previous ATRA use in non-APML has shown limited success due to other oncogenic signaling pathways.
- Dysregulated JAK/STAT signaling drives hematologic malignancies; JAK1/JAK2 inhibitors like ruxolitinib show promise in myelofibrosis and polycythemia vera.
Purpose of the Study:
- To investigate the potential of JAK1 inhibition (JAK1i) in combination with ATRA as a therapy for non-M3 acute myeloid leukemia (AML).
- To explore selective JAK1 inhibition to mitigate side effects associated with JAK2 inhibition, such as anemia and thrombocytopenia.
Main Methods:
- Assessed the efficacy of JAK1i (INCB52793) by analyzing cell cycle and apoptosis in AML cell lines.
- Utilized transcriptomic and proteomic analyses to understand the molecular effects of JAK1i.
- Evaluated the synergistic effects of JAK1i + ATRA in vitro and assessed in vivo efficacy using xenografts.
Main Results:
- Demonstrated novel synergistic activity between JAK1i and ATRA in non-M3 leukemia models.
- Transcriptomic and proteomic data confirmed structural and functional changes indicative of myeloid maturation.
- In vivo studies showed significant reduction in leukemic expansion when JAK1i and ATRA were combined.
Conclusions:
- The combination of JAK1i and ATRA induces cell cycle arrest, followed by myeloid differentiation and cell death in human leukemias.
- These findings suggest a potential therapeutic strategy using ATRA-based differentiation therapy for non-M3 human leukemias.
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