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Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function

Evidence suggests that increased microRNA-155 (miR-155) expression in immune cells enhances antitumor immune responses. However, given the reported association of miR-155 with tumorigenesis in various cancers, a debate is provoked on whether miR-155 is oncogenic or tumor suppressive. We aimed to int...

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Autores principales: Wang, Junfeng, Wang, Quanyi, Guan, Yinan, Sun, Yulu, Wang, Xiaozhi, Lively, Kaylie, Wang, Yuzhen, Luo, Ming, Kim, Julian A., Murphy, E. Angela, Yao, Yongzhong, Cai, Guoshuai, Fan, Daping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525116/
https://www.ncbi.nlm.nih.gov/pubmed/35925680
http://dx.doi.org/10.1172/JCI157248
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author Wang, Junfeng
Wang, Quanyi
Guan, Yinan
Sun, Yulu
Wang, Xiaozhi
Lively, Kaylie
Wang, Yuzhen
Luo, Ming
Kim, Julian A.
Murphy, E. Angela
Yao, Yongzhong
Cai, Guoshuai
Fan, Daping
author_facet Wang, Junfeng
Wang, Quanyi
Guan, Yinan
Sun, Yulu
Wang, Xiaozhi
Lively, Kaylie
Wang, Yuzhen
Luo, Ming
Kim, Julian A.
Murphy, E. Angela
Yao, Yongzhong
Cai, Guoshuai
Fan, Daping
author_sort Wang, Junfeng
collection PubMed
description Evidence suggests that increased microRNA-155 (miR-155) expression in immune cells enhances antitumor immune responses. However, given the reported association of miR-155 with tumorigenesis in various cancers, a debate is provoked on whether miR-155 is oncogenic or tumor suppressive. We aimed to interrogate the impact of tumor miR-155 expression, particularly that of cancer cell–derived miR-155, on antitumor immunity in breast cancer. We performed bioinformatic analysis of human breast cancer databases, murine experiments, and human specimen examination. We revealed that higher tumor miR-155 levels correlate with a favorable antitumor immune profile and better patient outcomes. Murine experiments demonstrated that miR-155 overexpression in breast cancer cells enhanced T cell influx, delayed tumor growth, and sensitized the tumors to immune checkpoint blockade (ICB) therapy. Mechanistically, miR-155 overexpression in breast cancer cells upregulated their CXCL9/10/11 production, which was mediated by SOCS1 inhibition and increased phosphorylated STAT1 (p-STAT1)/p-STAT3 ratios. We further found that serum miR-155 levels in breast cancer patients correlated with tumor miR-155 levels and tumor immune status. Our findings suggest that high serum and tumor miR-155 levels may be a favorable prognostic marker for breast cancer patients and that therapeutic elevation of miR-155 in breast tumors may improve the efficacy of ICB therapy via remodeling the antitumor immune landscape.
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spelling pubmed-95251162022-10-05 Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function Wang, Junfeng Wang, Quanyi Guan, Yinan Sun, Yulu Wang, Xiaozhi Lively, Kaylie Wang, Yuzhen Luo, Ming Kim, Julian A. Murphy, E. Angela Yao, Yongzhong Cai, Guoshuai Fan, Daping J Clin Invest Research Article Evidence suggests that increased microRNA-155 (miR-155) expression in immune cells enhances antitumor immune responses. However, given the reported association of miR-155 with tumorigenesis in various cancers, a debate is provoked on whether miR-155 is oncogenic or tumor suppressive. We aimed to interrogate the impact of tumor miR-155 expression, particularly that of cancer cell–derived miR-155, on antitumor immunity in breast cancer. We performed bioinformatic analysis of human breast cancer databases, murine experiments, and human specimen examination. We revealed that higher tumor miR-155 levels correlate with a favorable antitumor immune profile and better patient outcomes. Murine experiments demonstrated that miR-155 overexpression in breast cancer cells enhanced T cell influx, delayed tumor growth, and sensitized the tumors to immune checkpoint blockade (ICB) therapy. Mechanistically, miR-155 overexpression in breast cancer cells upregulated their CXCL9/10/11 production, which was mediated by SOCS1 inhibition and increased phosphorylated STAT1 (p-STAT1)/p-STAT3 ratios. We further found that serum miR-155 levels in breast cancer patients correlated with tumor miR-155 levels and tumor immune status. Our findings suggest that high serum and tumor miR-155 levels may be a favorable prognostic marker for breast cancer patients and that therapeutic elevation of miR-155 in breast tumors may improve the efficacy of ICB therapy via remodeling the antitumor immune landscape. American Society for Clinical Investigation 2022-10-03 /pmc/articles/PMC9525116/ /pubmed/35925680 http://dx.doi.org/10.1172/JCI157248 Text en © 2022 Wang et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Wang, Junfeng
Wang, Quanyi
Guan, Yinan
Sun, Yulu
Wang, Xiaozhi
Lively, Kaylie
Wang, Yuzhen
Luo, Ming
Kim, Julian A.
Murphy, E. Angela
Yao, Yongzhong
Cai, Guoshuai
Fan, Daping
Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title_full Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title_fullStr Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title_full_unstemmed Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title_short Breast cancer cell–derived microRNA-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
title_sort breast cancer cell–derived microrna-155 suppresses tumor progression via enhancing immune cell recruitment and antitumor function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525116/
https://www.ncbi.nlm.nih.gov/pubmed/35925680
http://dx.doi.org/10.1172/JCI157248
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