Tumor microenvironmental signals reshape chromatin landscapes to limit the functional potential of exhausted T cells

Author:

Ford B. Rhodes12ORCID,Vignali Paolo D. A.23ORCID,Rittenhouse Natalie L.1ORCID,Scharping Nicole E.23ORCID,Peralta Ronal23ORCID,Lontos Konstantinos34,Frisch Andrew T.23ORCID,Delgoffe Greg M.23ORCID,Poholek Amanda C.12ORCID

Affiliation:

1. Division of Pediatric Rheumatology, Department of Pediatrics, University of Pittsburgh, Pittsburgh, PA 15260, USA.

2. Department of Immunology, University of Pittsburgh, Pittsburgh, PA 15260, USA.

3. Tumor Microenvironment Center, UPMC Hillman Cancer Center, University of Pittsburgh, Pittsburgh, PA 15260, USA.

4. Department of Oncology, University of Pittsburgh Medical Center, Pittsburgh, PA 15260, USA.

Abstract

Response rates to immunotherapy in solid tumors remain low due in part to the elevated prevalence of terminally exhausted T cells, a hypofunctional differentiation state induced through persistent antigen and stress signaling. However, the mechanisms promoting progression to terminal exhaustion in the tumor remain undefined. Using the low-input chromatin immunoprecipitation sequencing method CUT&RUN, we profiled the histone modification landscape of tumor-infiltrating CD8 + T cells throughout differentiation. We found that terminally exhausted T cells had unexpected chromatin features that limit their transcriptional potential. Terminally exhausted T cells had a substantial fraction of active chromatin, including active enhancers enriched for bZIP/AP-1 transcription factor motifs that lacked correlated gene expression, which was restored by immunotherapeutic costimulatory signaling. Reduced transcriptional potential was also driven by an increase in histone bivalency, which we linked directly to hypoxia exposure. Enforced expression of the hypoxia-insensitive histone demethylase Kdm6b was sufficient to overcome hypoxia, increase function, and promote antitumor immunity. Our study reveals the specific epigenetic changes mediated by histone modifications during T cell differentiation that support exhaustion in cancer, highlighting that their altered function is driven by improper costimulatory signals and environmental factors. These data suggest that even terminally exhausted T cells may remain competent for transcription in settings of increased costimulatory signaling and reduced hypoxia.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine,Immunology

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