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Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity

Immunophenotyping of the tumor microenvironment (TME) is essential for enhancing immunotherapy efficacy. However, strategies for characterizing the TME exhibit significant heterogeneity. Here, we show that endoplasmic reticular oxidoreductase-1α (ERO1A) mediates an immune-suppressive TME and attenua...

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Autores principales: Liu, Lihui, Li, Sini, Qu, Yan, Bai, Hua, Pan, Xiangyu, Wang, Jian, Wang, Zhijie, Duan, Jianchun, Zhong, Jia, Wan, Rui, Fei, Kailun, Xu, Jiachen, Yuan, Li, Wang, Chao, Xue, Pei, Zhang, Xue, Ma, Zixiao, Wang, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10591028/
https://www.ncbi.nlm.nih.gov/pubmed/37769655
http://dx.doi.org/10.1016/j.xcrm.2023.101206
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author Liu, Lihui
Li, Sini
Qu, Yan
Bai, Hua
Pan, Xiangyu
Wang, Jian
Wang, Zhijie
Duan, Jianchun
Zhong, Jia
Wan, Rui
Fei, Kailun
Xu, Jiachen
Yuan, Li
Wang, Chao
Xue, Pei
Zhang, Xue
Ma, Zixiao
Wang, Jie
author_facet Liu, Lihui
Li, Sini
Qu, Yan
Bai, Hua
Pan, Xiangyu
Wang, Jian
Wang, Zhijie
Duan, Jianchun
Zhong, Jia
Wan, Rui
Fei, Kailun
Xu, Jiachen
Yuan, Li
Wang, Chao
Xue, Pei
Zhang, Xue
Ma, Zixiao
Wang, Jie
author_sort Liu, Lihui
collection PubMed
description Immunophenotyping of the tumor microenvironment (TME) is essential for enhancing immunotherapy efficacy. However, strategies for characterizing the TME exhibit significant heterogeneity. Here, we show that endoplasmic reticular oxidoreductase-1α (ERO1A) mediates an immune-suppressive TME and attenuates the response to PD-1 blockade. Ablation of ERO1A in tumor cells substantially incites anti-tumor T cell immunity and promotes the efficacy of aPD-1 in therapeutic models. Single-cell RNA-sequencing analyses confirm that ERO1A correlates with immunosuppression and dysfunction of CD8(+) T cells along anti-PD-1 treatment. In human lung cancer, high ERO1A expression is associated with a higher risk of recurrence following neoadjuvant immunotherapy. Mechanistically, ERO1A ablation impairs the balance between IRE1α and PERK signaling activities and induces lethal unfolded protein responses in tumor cells undergoing endoplasmic reticulum stress, thereby enhancing anti-tumor immunity via immunogenic cell death. These findings reveal how tumor ERO1A induces immunosuppression, highlighting its potential as a therapeutic target for cancer immunotherapy.
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spelling pubmed-105910282023-10-24 Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity Liu, Lihui Li, Sini Qu, Yan Bai, Hua Pan, Xiangyu Wang, Jian Wang, Zhijie Duan, Jianchun Zhong, Jia Wan, Rui Fei, Kailun Xu, Jiachen Yuan, Li Wang, Chao Xue, Pei Zhang, Xue Ma, Zixiao Wang, Jie Cell Rep Med Article Immunophenotyping of the tumor microenvironment (TME) is essential for enhancing immunotherapy efficacy. However, strategies for characterizing the TME exhibit significant heterogeneity. Here, we show that endoplasmic reticular oxidoreductase-1α (ERO1A) mediates an immune-suppressive TME and attenuates the response to PD-1 blockade. Ablation of ERO1A in tumor cells substantially incites anti-tumor T cell immunity and promotes the efficacy of aPD-1 in therapeutic models. Single-cell RNA-sequencing analyses confirm that ERO1A correlates with immunosuppression and dysfunction of CD8(+) T cells along anti-PD-1 treatment. In human lung cancer, high ERO1A expression is associated with a higher risk of recurrence following neoadjuvant immunotherapy. Mechanistically, ERO1A ablation impairs the balance between IRE1α and PERK signaling activities and induces lethal unfolded protein responses in tumor cells undergoing endoplasmic reticulum stress, thereby enhancing anti-tumor immunity via immunogenic cell death. These findings reveal how tumor ERO1A induces immunosuppression, highlighting its potential as a therapeutic target for cancer immunotherapy. Elsevier 2023-09-27 /pmc/articles/PMC10591028/ /pubmed/37769655 http://dx.doi.org/10.1016/j.xcrm.2023.101206 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Lihui
Li, Sini
Qu, Yan
Bai, Hua
Pan, Xiangyu
Wang, Jian
Wang, Zhijie
Duan, Jianchun
Zhong, Jia
Wan, Rui
Fei, Kailun
Xu, Jiachen
Yuan, Li
Wang, Chao
Xue, Pei
Zhang, Xue
Ma, Zixiao
Wang, Jie
Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title_full Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title_fullStr Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title_full_unstemmed Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title_short Ablation of ERO1A induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
title_sort ablation of ero1a induces lethal endoplasmic reticulum stress responses and immunogenic cell death to activate anti-tumor immunity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10591028/
https://www.ncbi.nlm.nih.gov/pubmed/37769655
http://dx.doi.org/10.1016/j.xcrm.2023.101206
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