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Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export

Therapeutic monoclonal antibodies against the PD-L1/PD-1 (programmed death ligand-1/programmed cell death protein-1) axis have achieved great successes in cancer treatments, but the development of small-molecule immunomodulators of the pathway has lagged far behind. We established a cellular cocultu...

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Autores principales: Chen, Fang-Fang, Li, Zheng, Ma, Dawei, Yu, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567511/
https://www.ncbi.nlm.nih.gov/pubmed/33110706
http://dx.doi.org/10.1080/2162402X.2020.1831153
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author Chen, Fang-Fang
Li, Zheng
Ma, Dawei
Yu, Qiang
author_facet Chen, Fang-Fang
Li, Zheng
Ma, Dawei
Yu, Qiang
author_sort Chen, Fang-Fang
collection PubMed
description Therapeutic monoclonal antibodies against the PD-L1/PD-1 (programmed death ligand-1/programmed cell death protein-1) axis have achieved great successes in cancer treatments, but the development of small-molecule immunomodulators of the pathway has lagged far behind. We established a cellular coculture assay with two stable transfectant cell lines, a PD-L1-expressing tumor cell line PC9/PD-L1 and a PD-1-expressing T cell line Jurkat/PD-1. Western blotting analyses were used to monitor the PD-L1/PD-1 interaction and signaling. We analyzed PD-L1 glycosylation by lectin binding assay and glycosidase digestion, and examined subcellular localization of PD-L1 by immunocytochemical staining. Luciferase assay and real-time PCR were used to evaluate T cell activation in the coculture experiments. We found that coculturing of the PC9/PD-L1 cells with the Jurkat/PD-1 cells induced a lysosomal degradation of PD-1. A small-molecule PD-L1 inhibitor BMS1166 developed by Bristol-Myers Squibb inhibited the coculture-induced PD-1 degradation through a unique mechanism. BMS1166 specifically affected PD-L1 glycosylation and prevented transporting of the under-glycosylated form of PD-L1 from endoplasmic reticulum (ER) to Golgi, leading to accumulation of PD-L1 in ER. In doing so, BMS1166 blocked PD-L1/PD-1 signaling. Coculturing PD-L1-expressing cells with PD-1-expressing cells induced degradation of PD-1, which could be used as a readout to identify inhibitors of PD-L1/PD-1 signaling. The small-molecule PD-L1 inhibitor BMS1166 abolished the glycosylation and maturation of PD-L1 by blocking its exporting from ER to Golgi. Our study discovered a new strategy to identify inhibitors of the PD-L1/PD-1 signaling pathway and to develop new drugs for the treatment of cancer.
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spelling pubmed-75675112020-10-26 Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export Chen, Fang-Fang Li, Zheng Ma, Dawei Yu, Qiang Oncoimmunology Original Research Therapeutic monoclonal antibodies against the PD-L1/PD-1 (programmed death ligand-1/programmed cell death protein-1) axis have achieved great successes in cancer treatments, but the development of small-molecule immunomodulators of the pathway has lagged far behind. We established a cellular coculture assay with two stable transfectant cell lines, a PD-L1-expressing tumor cell line PC9/PD-L1 and a PD-1-expressing T cell line Jurkat/PD-1. Western blotting analyses were used to monitor the PD-L1/PD-1 interaction and signaling. We analyzed PD-L1 glycosylation by lectin binding assay and glycosidase digestion, and examined subcellular localization of PD-L1 by immunocytochemical staining. Luciferase assay and real-time PCR were used to evaluate T cell activation in the coculture experiments. We found that coculturing of the PC9/PD-L1 cells with the Jurkat/PD-1 cells induced a lysosomal degradation of PD-1. A small-molecule PD-L1 inhibitor BMS1166 developed by Bristol-Myers Squibb inhibited the coculture-induced PD-1 degradation through a unique mechanism. BMS1166 specifically affected PD-L1 glycosylation and prevented transporting of the under-glycosylated form of PD-L1 from endoplasmic reticulum (ER) to Golgi, leading to accumulation of PD-L1 in ER. In doing so, BMS1166 blocked PD-L1/PD-1 signaling. Coculturing PD-L1-expressing cells with PD-1-expressing cells induced degradation of PD-1, which could be used as a readout to identify inhibitors of PD-L1/PD-1 signaling. The small-molecule PD-L1 inhibitor BMS1166 abolished the glycosylation and maturation of PD-L1 by blocking its exporting from ER to Golgi. Our study discovered a new strategy to identify inhibitors of the PD-L1/PD-1 signaling pathway and to develop new drugs for the treatment of cancer. Taylor & Francis 2020-10-14 /pmc/articles/PMC7567511/ /pubmed/33110706 http://dx.doi.org/10.1080/2162402X.2020.1831153 Text en © 2020 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Chen, Fang-Fang
Li, Zheng
Ma, Dawei
Yu, Qiang
Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title_full Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title_fullStr Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title_full_unstemmed Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title_short Small-molecule PD-L1 inhibitor BMS1166 abrogates the function of PD-L1 by blocking its ER export
title_sort small-molecule pd-l1 inhibitor bms1166 abrogates the function of pd-l1 by blocking its er export
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7567511/
https://www.ncbi.nlm.nih.gov/pubmed/33110706
http://dx.doi.org/10.1080/2162402X.2020.1831153
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