Tryptophan 2,3‐dioxygenase‐positive matrix fibroblasts fuel breast cancer lung metastasis via kynurenine‐mediated ferroptosis resistance of metastatic cells and T cell dysfunction

Author:

Liu Yongcan1ORCID,Chen Shanchun1,Wan Xueying1,Wang Rui1,Luo Haojun2ORCID,Chang Chao1,Dai Peijin1,Gan Yubi1,Guo Yuetong1,Hou Yixuan3,Sun Yan4,Teng Yong56,Cui Xiaojiang7ORCID,Liu Manran1ORCID

Affiliation:

1. Key Laboratory of Laboratory Medical Diagnostics Chinese Ministry of Education Chongqing Medical University Chongqing P. R. China

2. Department of Thyroid and Breast Surgery The Second Affiliated Hospital of Chongqing Medical University Chongqing P. R. China

3. Experimental Teaching Center of Basic Medicine Science Chongqing Medical University Chongqing P. R. China

4. Department of Cell Biology and Medical Genetics Basic Medical School Chongqing Medical University Chongqing P. R. China

5. Department of Hematology and Medical Oncology Winship Cancer Institute Emory University School of Medicine Atlanta Georgia USA

6. Wallace H. Coulter Department of Biomedical Engineering Georgia Institute of Technology and Emory University Atlanta Georgia USA

7. Department of Surgery Department of Obstetrics and Gynecology Samuel Oschin Comprehensive Cancer Institute Cedars‐Sinai Medical Center Los Angeles California USA

Abstract

AbstractBackgroundTumor metastasis is a major threat to cancer patient survival. The organ‐specific niche plays a pivotal role in tumor organotropic metastasis. Fibroblasts serve as a vital component of the metastatic microenvironment, but how heterogeneous metastasis‐associated fibroblasts (MAFs) promote organotropic metastasis is poorly characterized. Here, we aimed to decipher the heterogeneity of MAFs and elucidate the distinct roles of these fibroblasts in pulmonary metastasis formation in breast cancer.MethodsMouse models of breast cancer pulmonary metastasis were established using an in vivo selection method of repeated injections of metastatic cells purified from the mouse lung. Single‐cell RNA‐sequencing (scRNA‐seq) was employed to investigate the heterogeneity of MAFs. Transgenic mice were used to examine the contribution of tryptophan 2,3‐dioxygenase‐positive matrix fibroblasts (TDO2+ MFs) in lung metastasis.ResultsWe uncovered 3 subtypes of MAFs in the lung metastatic microenvironment, and their transcriptome profiles changed dynamically as lung metastasis evolved. As the predominant subtype, MFs were exclusively marked by platelet‐derived growth factor receptor alpha (PDGFRA) and mainly located on the edge of the metastasis, and T cells were enriched around MFs. Notably, high MF signatures were significantly associated with poor survival in breast cancer patients. Lung metastases were markedly diminished, and the suppression of T cells was dramatically attenuated in MF‐depleted experimental metastatic mouse models. We found that TDO2+ MFs controlled pulmonary metastasis by producing kynurenine (KYN), which upregulated ferritin heavy chain 1 (FTH1) level in disseminated tumor cells (DTCs), enabling DTCs to resist ferroptosis. Moreover, TDO2+ MF‐secreted chemokines C‐C motif chemokine ligand 8 (CCL8) and C‐C motif chemokine ligand 11 (CCL11) recruited T cells. TDO2+ MF‐derived KYN induced T cell dysfunction. Conditional knockout of Tdo2 in MFs diminished lung metastasis and enhanced immune activation.ConclusionsOur study reveals crucial roles of TDO2+ MFs in promoting lung metastasis and DTCs’ immune evasion in the metastatic niche. It suggests that targeting the metabolism of lung‐specific stromal cells may be an effective treatment strategy for breast cancer patients with lung metastasis.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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