Downregulation of TCF7 and LEF1 is a key determinant of tumor-infiltrating regulatory T-cell function

Author:

Kidani Yujiro123,Kitagawa Yohko2,Hagiwara Masaki123ORCID,Kawashima Atsunari45ORCID,Kanazawa Takayuki35,Wada Hisashi5,Uemura Motohide4,Nonomura Norio4,Motooka Daisuke6,Nakamura Shota6,Ohkura Naganari12,Sakaguchi Shimon2ORCID

Affiliation:

1. Department of Basic Research in Tumor Immunology, Graduate School of Medicine, Osaka University , Osaka , Japan

2. Department of Experimental Immunology, Immunology Frontier Research Center, Osaka University , Osaka , Japan

3. Biopharmaceutical Research Division, Shionogi & Co., Ltd. , Osaka , Japan

4. Department of Urology, Graduate School of Medicine, Osaka University , Osaka , Japan

5. Department of Clinical Research in Tumor Immunology, Graduate School of Medicine, Osaka University , Osaka , Japan

6. Department of Infection Metagenomics, Genome Information Research Center, Research Institute for Microbial Diseases, Osaka University , Osaka , Japan

Abstract

Abstract Forkhead box P3 (Foxp3)-expressing regulatory T (Treg) cells play essential roles in immune homeostasis but also contribute to establish a favorable environment for tumor growth by suppressing anti-tumor immune responses. It is thus necessary to specifically target tumor-infiltrating Treg cells to minimize effects on immune homeostasis in cancer immunotherapy. However, molecular features that distinguish tumor-infiltrating Treg cells from those in secondary lymphoid organs remain unknown. Here we characterize distinct features of tumor-infiltrating Treg cells by global analyses of the transcriptome and chromatin landscape. They exhibited activated phenotypes with enhanced Foxp3-dependent transcriptional regulation, yet being distinct from activated Treg cells in secondary lymphoid organs. Such differences may be attributed to the extensive clonal expansion of tumor-infiltrating Treg cells. Moreover, we found that TCF7 and LEF1 were specifically downregulated in tumor-infiltrating Treg cells both in mice and humans. These factors and Foxp3 co-occupied Treg suppressive function-related gene loci in secondary lymphoid organ Treg cells, whereas the absence of TCF7 and LEF1 accompanied altered gene expression and chromatin status at these gene loci in tumor-infiltrating Treg cells. Functionally, overexpression of TCF7 and LEF1 in Treg cells inhibited the enhancement of Treg suppressive function upon activation. Our results thus show the downregulation of TCF7 and LEF1 as markers of highly suppressive Treg cells in tumors and suggest that their absence controls the augmentation of Treg suppressive function in tumors. These molecules may be potential targets for novel cancer immunotherapy with minimum effects on immune homeostasis.

Funder

Grant-in-Aid for Specially Promoted Research

Project for Development of Innovative Research on Cancer Therapeutics

Core Research for Evolutional Science and Technology

Leading Advanced Projects for medical innovation

Osaka University

Publisher

Oxford University Press (OUP)

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4. Selective depletion of Foxp3+ regulatory T cells improves effective therapeutic vaccination against established melanoma;Klages,2010

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