Abstract
Whether human tumor-specific CD4 T cells can drive antitumor immunity in cancers lacking tumor-cell MHC class II expression has not been established. In MHC class II-negative melanoma and breast cancer, CD4 T cells with a transcriptional signature of tumor specificity correlated with myeloid and CD8 T cell activation. Using a patient-derived NY-ESO-specific, HLA-DP04-restricted TCR, we tested whether human CD4 T cells could control tumors through indirect antigen presentation. In vitro, CD4 T cells inhibited HLA-DP-negative melanoma growth through recognition of tumor-derived antigen on antigen presenting cells (APC). In humanized mice, CD4 T cell transfer induced regression of HLA-DP-negative tumors, and control required HLA-matched human APCs. CD4 T cell transfer induced endogenous CD8 T cell proliferation and myeloid activation that mirrored immune programs correlated with the presence of these cells in patients. These findings establish that human tumor-specific CD4 T cells coordinate antitumor immunity through APC without direct tumor recognition, supporting their therapeutic relevance in MHC class II-negative cancers.