Epigenetic Repression of STING by MYC Promotes Immune Evasion and Resistance to Immune Checkpoint Inhibitors in Triple-Negative Breast Cancer
- Authors
- Lee, Kyung-min; Lin, Chang-Ching; Servetto, Alberto; Bae, Joonbeom; Kandagatla, Vishal; Ye, Dan; Kim, GunMin; Sudhan, Dhivya R.; Mendiratta, Saurabh; Ericsson, Paula I. Gonzalez; Balko, Justin M.; Lee, Jeon; Barnes, Spencer; Malladi, Venkat S.; Tabrizi, Siamak; Reddy, Sangeetha M.; Yum, Seoyun; Chang, Ching-Wei; Hutchinson, Katherine E.; Yost, Susan E.; Yuan, Yuan; Chen, Zhijian J.; Fu, Yang-Xin; Hanker, Ariella B.; Arteaga, Carlos L.
- Issue Date
- Jul-2022
- Publisher
- American Association for Cancer Research Inc.
- Citation
- Cancer immunology research, v.10, no.7, pp 829 - 843
- Pages
- 15
- Indexed
- SCIE
SCOPUS
- Journal Title
- Cancer immunology research
- Volume
- 10
- Number
- 7
- Start Page
- 829
- End Page
- 843
- URI
- https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/194579
- DOI
- 10.1158/2326-6066.CIR-21-0826
- ISSN
- 2326-6066
2326-6074
- Abstract
- The MYC oncogene is frequently amplified in triple-negative breast cancer (TNBC). Here, we show that MYC suppression induces immune-related hallmark gene set expression and tumor-infiltrating T cells in MYC-hyperactivated TNBCs. Mech-anistically, MYC repressed stimulator of interferon genes (STING) expression via direct binding to the STING1 enhancer region, resulting in downregulation of the T-cell chemokines CCL5, CXCL10, and CXCL11. In primary and metastatic TNBC cohorts, tumors with high MYC expression or activity exhibited low STING expression. Using a CRISPR-mediated enhancer perturbation approach, we demonstrated that MYC-driven immune evasion is mediated by STING repression. STING repression induced resistance to PD-L1 blockade in mouse models of TNBC. Finally, a small-molecule inhibitor of MYC combined with PD-L1 blockade elicited a durable response in immune-cold TNBC with high MYC expression, suggesting a strategy to restore PD-L1 inhibitor sensitivity in MYC-overexpressing TNBC.
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