METTL5 Blockade Enhances Anti-Tumor Immune Response via Inducing Neoantigen Generation
Zhang, Y.; Shi, X.; Wang, Y.; Wang, R.; Cao, Y.; Chen, H.
Show abstract
Tumor neoantigens play a pivotal role in eliciting tumor-specific immune responses and holds the promise for personalized immunotherapy. However, previous studies mainly focused on the tumor-specific neoantigens derived from genomic mutation and aberrant RNA splicing, limiting the repertoire of targetable neoantigens. Here, we demonstrate that inhibition of rRNA methyltransferase METTL5 translationally increases neoantigen production and enhances anti-tumor immunity. Mechanistically, METTL5-mediated m6A modification at the decoding center of small ribosomal subunit maintains the proper function of ribosome during mRNA translation. METTL5-deficiency decreases translation fidelity and increases production of tumor cell-specific antigens derived from non-canonical translation. Furthermore, we found that Mettl5-depletion increased CD8T cell infiltration density and T cell receptor (TCR) repertoire diversity in murine tumor models. Importantly, this immunostimulatory effect strictly depended on intact antigen presentation pathways, suggesting that Mettl5 knockout exerts its effects primarily through neoantigen generation. Together, this study uncovers the intrinsic mechanisms sustaining mRNA translation accuracy, elucidates a novel source of tumor neoantigen generation, and proposes a new strategy to enhance immunotherapy through targeting mRNA translation.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dual Ribosome Profiling reveals metabolic limitations of cancer and stromal cells in thetumor microenvironment 97%
- Single-cell profiling guided combinatorial immunotherapy for fast-evolving CDK4/6 inhibitor resistant HER2-positive breast cancer 97%
- Regulatory T cells crosstalk with tumor and endothelium through lymphotoxin signaling 97%
Similar papers in this journal
- Neoantigen Cancer Vaccines and Different Immune Checkpoint Therapies Each Utilize Both Converging and Distinct Mechanisms that in Combination Enable Synergistic Therapeutic Efficacy 97%
- Stromal remodeling regulates dendritic cell abundance and activity in the tumor microenvironment 96%
- Cancer-cell-derived cGAMP limits the activity of tumor-associated CD8+ T cells 95%
Similar papers in this journal
- Clonal spreading of tumor-infiltrating T cells underlies the robust antitumor immune responses 97%
- Microenvironmental correlates of immune checkpoint inhibitor response in human melanoma brain metastases revealed by T cell receptor and single-cell RNA sequencing 96%
- Combining an alarmin HMGN1 peptide with PD-L1 blockade facilitates stem-like CD8+ T cell expansion and results in robust antitumor effects 96%
Similar papers in this journal
- Patient-derived xenografts and single-cell sequencing identifies three subtypes of tumor-reactive lymphocytes in uveal melanoma metastases 95%
- VLA-4 suppression by senescence signals regulates meningeal immunity and leptomeningeal metastasis 95%
- Unveiling the influence of tumor and immune signatures on immune checkpoint therapy in advanced lung cancer 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.