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.

Leukemia
|September 25, 2024
PubMed

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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