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Published on: January 22, 2019
Mixed lineage kinase 3 inhibition induces T cell activation and cytotoxicity
Sandeep Kumar1, Sunil Kumar Singh1, Navin Viswakarma1
1Department of Surgery, Division of Surgical Oncology, University of Illinois at Chicago, Chicago, IL 60612.
Abstract:
Mixed lineage kinase 3 (MLK3), also known as MAP3K11, was initially identified in a megakaryocytic cell line and is an emerging therapeutic target in cancer, yet its role in immune cells is not known. Here, we report that loss or pharmacological inhibition of MLK3 promotes activation and cytotoxicity of T cells. MLK3 is abundantly expressed in T cells, and its loss alters serum chemokines, cytokines, and CD28 protein expression on T cells and its subsets. MLK3 loss or pharmacological inhibition induces activation of T cells in in vitro, ex vivo, and in vivo conditions, irrespective of T cell activating agents. Conversely, overexpression of MLK3 decreases T cell activation. Mechanistically, loss or inhibition of MLK3 down-regulates expression of a prolyl-isomerase, Ppia, which is directly phosphorylated by MLK3 to increase its isomerase activity. Moreover, MLK3 also phosphorylates nuclear factor of activated T cells 1 (NFATc1) and regulates its nuclear translocation via interaction with Ppia, and this regulates T cell effector function. In an immune-competent mouse model of breast cancer, MLK3 inhibitor increases Granzyme B-positive CD8+ T cells and decreases MLK3 and Ppia gene expression in tumor-infiltrating T cells. Likewise, the MLK3 inhibitor in pan T cells, isolated from breast cancer patients, also increases cytotoxic CD8+ T cells. These results collectively demonstrate that MLK3 plays an important role in T cell biology, and targeting MLK3 could serve as a potential therapeutic intervention via increasing T cell cytotoxicity in cancer.
Insights
Mixed lineage kinase 3 (MLK3) regulates T cell activation and cytotoxicity. Inhibiting MLK3 enhances T cell responses, suggesting MLK3 as a potential cancer immunotherapy target by boosting T cell killing ability.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Mixed lineage kinase 3 (MLK3/MAP3K11) is an emerging cancer target, but its function in immune cells remains unknown.
- MLK3 is expressed in T cells, but its specific role in T cell biology and cancer immunity requires elucidation.
Purpose of the Study:
- To investigate the role of MLK3 in T cell activation, function, and its potential as a therapeutic target in cancer immunotherapy.
Main Methods:
- Utilized loss-of-function studies (gene deletion/inhibition) and overexpression models of MLK3 in T cells.
- Employed in vitro, ex vivo, and in vivo assays, including immune-competent mouse cancer models and patient-derived T cells.
- Investigated molecular mechanisms involving Ppia (prolyl-isomerase) and NFATc1 (nuclear factor of activated T cells 1) phosphorylation and interaction.
Main Results:
- MLK3 loss or inhibition significantly enhances T cell activation and cytotoxicity, independent of T cell activation stimuli.
- MLK3 regulates T cell function by down-regulating Ppia expression and activity, and by phosphorylating NFATc1, affecting its nuclear translocation.
- In a breast cancer model, MLK3 inhibition increased cytotoxic CD8+ T cells and reduced MLK3/Ppia expression in tumor-infiltrating T cells. Similar effects were observed in patient-derived T cells.
Conclusions:
- MLK3 plays a critical role in suppressing T cell activation and effector functions.
- Targeting MLK3 represents a promising therapeutic strategy to enhance T cell-mediated anti-cancer immunity.
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