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Published on: May 31, 2018
MERTK inhibition selectively activates a DC - T-cell axis to provide anti-leukemia immunity
Justus M Huelse1, Swati S Bhasin1, Kristen M Jacobsen1
1Aflac Cancer and Blood Disorders Center, Children's Healthcare of Atlanta and Department of Pediatrics, Emory University, Atlanta, GA, 30322, USA.
Abstract:
TAM-family tyrosine kinases (TYRO3, AXL and MERTK) are potential cancer therapeutic targets. In previous studies MERTK inhibition in the immune microenvironment was therapeutically effective in a B-cell acute leukemia (B-ALL) model. Here, we probed anti-leukemia immune mechanisms and evaluated roles for TYRO3 and AXL in the leukemia microenvironment. Host Mertk knock-out or MERTK inhibitor MRX-2843 increased CD8α+ dendritic cells (DCs) with enhanced antigen-presentation capacity in the leukemia microenvironment and inhibited leukemogenesis. High MERTK or low DC gene expression were associated with poor prognosis in pediatric ALL patients, indicating the clinical relevance of these findings. MRX-2843 increased CD8+ T-cell numbers and prevented induction of exhaustion markers, implicating a DC - T-cell axis. Indeed, combined depletion of CD8α+ DCs and CD8+ T-cells was required to abrogate anti-leukemia immunity in Mertk-/- mice. Tyro3-/- mice were also protected against B-ALL, implicating TYRO3 as an immunotherapeutic target. In contrast to Mertk-/- mice, Tyro3-/- did not increase CD8α+ DCs with enhanced antigen-presentation capacity and therapeutic activity was less dependent on DCs, indicating a different immune mechanism. Axl-/- did not impact leukemogenesis. These data demonstrate differential TAM kinase roles in the leukemia microenvironment and provide rationale for development of MERTK and/or TYRO3-targeted immunotherapies.
Insights
Targeting TAM-family kinases MERTK and TYRO3 shows promise for B-cell acute leukemia (B-ALL) immunotherapy. Inhibiting MERTK or knocking out TYRO3 enhances anti-leukemia immunity by boosting dendritic cells and T-cells.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Therapeutics
Background:
- TAM-family tyrosine kinases (TYRO3, AXL, MERTK) are implicated as cancer targets.
- MERTK inhibition demonstrated therapeutic efficacy in a B-cell acute leukemia (B-ALL) model.
- Understanding the roles of TYRO3 and AXL in the leukemia microenvironment is crucial.
Purpose of the Study:
- To investigate the anti-leukemia immune mechanisms.
- To evaluate the roles of TYRO3 and AXL in the leukemia microenvironment.
- To explore MERTK and TYRO3 as potential immunotherapeutic targets for B-ALL.
Main Methods:
- Utilized host Mertk knock-out and MERTK inhibitor MRX-2843.
- Analyzed CD8α+ dendritic cell (DC) function and antigen-presentation capacity.
- Assessed CD8+ T-cell numbers and exhaustion markers.
- Examined Tyro3-/- and Axl-/- mouse models in the context of B-ALL.
Main Results:
- Mertk deficiency or MERTK inhibition increased CD8α+ DCs and inhibited leukemogenesis.
- High MERTK or low DC gene expression correlated with poor prognosis in pediatric ALL patients.
- MRX-2843 enhanced CD8+ T-cell activity and prevented exhaustion.
- Tyro3 deficiency conferred protection against B-ALL via a distinct immune mechanism.
- Axl deficiency did not affect leukemogenesis.
Conclusions:
- MERTK and TYRO3 play differential roles in the leukemia microenvironment.
- Targeting MERTK and TYRO3 warrants further investigation for B-ALL immunotherapies.
- A DC-T cell axis is critical for MERTK-mediated anti-leukemia immunity.
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