Diversity of intratumoral regulatory T cells in B-cell non-Hodgkin lymphoma

Author:

Spasevska Ivana123ORCID,Sharma Ankush123,Steen Chloé B.1234ORCID,Josefsson Sarah E.12,Blaker Yngvild N.12,Kolstad Arne256,Rustad Even H.13ORCID,Meyer Saskia13,Isaksen Kathrine123ORCID,Chellappa Stalin1,Kushekhar Kushi12,Beiske Klaus27,Førsund Mette S.7,Spetalen Signe7,Holte Harald26ORCID,Østenstad Bjørn26,Brodtkorb Marianne26,Kimby Eva8,Olweus Johanna139ORCID,Taskén Kjetil12ORCID,Newman Aaron M.410,Lorenz Susanne11ORCID,Smeland Erlend B.123,Alizadeh Ash A.410ORCID,Huse Kanutte123,Myklebust June H.123ORCID

Affiliation:

1. 1Department of Cancer Immunology, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway

2. 2KG Jebsen Centre for B-cell malignancies, Institute of Clinical Medicine, University of Oslo, Oslo, Norway

3. 3Precision Immunotherapy Alliance, University of Oslo, Oslo, Norway

4. 4Division of Oncology, Stanford University School of Medicine, Stanford, CA

5. 5Department of Oncology, Innlandet Hospital Trust, Lillehammer, Norway

6. 6Division of Cancer Medicine, Department of Oncology, Oslo University Hospital, Oslo, Norway

7. 7Division of Cancer Medicine, Department of Pathology, Oslo University Hospital, Oslo, Norway

8. 8Department of Hematology, Karolinska Institute, Stockholm, Sweden

9. 9Institute of Clinical Medicine, University of Oslo, Norway

10. 10Divisions of Hematology & Oncology, Department of Medicine, Stanford University, Stanford, CA

11. 11Department of Core Facilities, Geonomics Core Facility, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway

Abstract

Abstract Tumor-infiltrating regulatory T cells (Tregs) contribute to an immunosuppressive tumor microenvironment. Despite extensive studies, the prognostic impact of tumor-infiltrating Tregs in B-cell non-Hodgkin lymphomas (B-NHLs) remains unclear. Emerging studies suggest substantial heterogeneity in the phenotypes and suppressive capacities of Tregs, emphasizing the importance of understanding Treg diversity and the need for additional markers to identify highly suppressive Tregs. Here, we applied single-cell RNA sequencing and T-cell receptor sequencing combined with high-dimensional cytometry to decipher the heterogeneity of intratumoral Tregs in diffuse large B-cell lymphoma and follicular lymphoma (FL), compared with that in nonmalignant tonsillar tissue. We identified 3 distinct transcriptional states of Tregs: resting, activated, and unconventional LAG3+FOXP3− Tregs. Activated Tregs were enriched in B-NHL tumors, coexpressed several checkpoint receptors, and had stronger immunosuppressive activity compared with resting Tregs. In FL, activated Tregs were found in closer proximity to CD4+ and CD8+ T cells than other cell types. Furthermore, we used a computational approach to develop unique gene signature matrices, which were used to enumerate each Treg subset in cohorts with bulk gene expression data. In 2 independent FL cohorts, activated Tregs was the major subset, and high abundance was associated with adverse outcome. This study demonstrates that Tregs infiltrating B-NHL tumors are transcriptionally and functionally diverse. Highly immunosuppressive activated Tregs were enriched in tumor tissue but absent in the peripheral blood. Our data suggest that a deeper understanding of Treg heterogeneity in B-NHL could open new paths for rational drug design, facilitating selective targeting to improve antitumor immunity.

Publisher

American Society of Hematology

Subject

Hematology

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