BATF epigenetically and transcriptionally controls the activation program of regulatory T cells in human tumors

Author:

Itahashi Kota1ORCID,Irie Takuma1,Yuda Junichiro12ORCID,Kumagai Shogo13,Tanegashima Tokiyoshi1ORCID,Lin Yi-Tzu13ORCID,Watanabe Sho1ORCID,Goto Yasushi4,Suzuki Jun5,Aokage Keiju5,Tsuboi Masahiro5ORCID,Minami Yosuke2,Ishii Genichiro6ORCID,Ohe Yuichiro4ORCID,Ise Wataru78,Kurosaki Tomohiro8910ORCID,Suzuki Yutaka11,Koyama Shohei1ORCID,Nishikawa Hiroyoshi13ORCID

Affiliation:

1. Division of Cancer Immunology, Research Institute/Exploratory Oncology Research and Clinical Trial Center (EPOC), National Cancer Center, Tokyo 104-0045/Chiba 277-8577, Japan.

2. Department of Hematology, National Cancer Center Hospital East, Chiba 277-8577, Japan.

3. Department of Immunology, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.

4. Department of Thoracic Oncology, National Cancer Center Hospital, Tokyo 104-0045, Japan.

5. Department of Thoracic Surgery, National Cancer Center Hospital East, Chiba 277-8577, Japan.

6. Division of Pathology, National Cancer Center Hospital East, Chiba 277-8577, Japan.

7. Regulation of Host Defense Team, Division of Microbiology and Immunology, Center for Infectious Disease Education and Research, Osaka University, Osaka 565-0871, Japan.

8. Laboratory of Lymphocyte Differentiation, WPI Immunology Frontier Research Center, Osaka University, Osaka 565-0871, Japan.

9. Division of Microbiology and Immunology, Center for Infectious Disease Education and Research, Osaka University, Osaka 565-0871, Japan.

10. Laboratory for Lymphocyte Differentiation, RIKEN Center for Integrative Medical Sciences (IMS), Kanagawa 230-0045, Japan.

11. Graduate School of Frontier Sciences, University of Tokyo, Chiba 277-8562, Japan.

Abstract

Regulatory T (T reg ) cells suppress effective antitumor immunity in tumor-bearing hosts, thereby becoming promising targets in cancer immunotherapy. Despite the importance of T reg cells in tumor immunity, little is known about their differentiation process and epigenetic profiles in the tumor microenvironment (TME). Here, we showed that T reg cells in the TME of human lung cancers harbored a completely different open chromatin profile compared with CD8 + T cells, conventional CD4 + T cells in the TME, and peripheral T reg cells. The integrative sequencing analyses including ATAC, single-cell RNA, and single-cell ATAC sequencing revealed that BATF, IRF4, NF-κB, and NR4A were important transcription factors for T reg cell differentiation in the TME. In particular, BATF was identified as a key regulator, which leveraged T reg cell differentiation through epigenetically controlling activation-associated gene expression, resulting in the robustness of T reg cells in the TME. The single-cell sequencing approaches also revealed that tissue-resident and tumor-infiltrating T reg cells followed a common pathway for differentiation and activation in a BATF-dependent manner heading toward T reg cells with the most differentiated and activated phenotypes in tissues and tumors. BATF deficiency in T reg cells remarkably inhibited tumor growth, and high BATF expression was associated with poor prognosis in lung cancer, kidney cancer, and melanoma. These findings indicate one of the specific chromatin remodeling and differentiation programs of T reg cells in the TME, which can be applied in the development of T reg cell–targeted therapies.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine,Immunology

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