DOI: 10.1073/pnas.2617943123 ISSN: 0027-8424

Select intratumoral riboflavin-auxotrophic Enterococcus species enhance cell surface MR1 expression and MAIT TCR activation in lung cancer

Pakhi Birla, Lansaol Yang, Wanting Shan, Sakura Minamisawa, Omkar Dhaygude, Haritha Manoj, Alex J. Lee, Jacqueline Ferri, Ying Zheng, Andrew Northcutt, Hongni Fan, Hadley Beauregard, Zhen Zeng, Kellie N. Smith, Fyza Y. Shaikh, Cynthia L. Sears, Drew M. Pardoll, Franck Housseau

Mucosal-associated invariant T (MAIT) cells are innate-like T cells capable of MR1-dependent immune surveillance, but how intratumoral bacteria modulate MR1 expression in human lung tumors remains unclear. We studied intratumoral MAIT cells from paired single-cell RNA and TCR sequencing datasets of tumor-infiltrating CD3 T cells isolated from non-small cell lung cancer tumors in patients receiving neoadjuvant PD-1 blockade therapy. MAIT cells were subclustered to identify conventional MAIT-associated TCR clonotypes, which were then used to examine how bacterial exposure impacts cell-surface MR1 expression and downstream MAIT TCR activation. We found that select intratumoral Enterococcus species (spp.) did not directly activate MAIT cells but enhanced MR1-dependent MAIT activation in the presence of exogenous 5-OP-RU by increasing cell-surface MR1 expression on antigen-presenting cells including dendritic cells, B cells, and mononuclear phagocytes. This increase in MR1 cell surface expression is modulated through a posttranscriptional mechanism consistent with altered intracellular processing and trafficking of MR1. These findings reveal a role for tumor-associated bacteria in modulating MR1-dependent innate-like T cell activation and provide a basis for future studies examining whether this process influences response to immune checkpoint blockade.

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