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The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines

One way that tumors evade immune destruction is through tumor and stromal cell expression of arginine-degrading enzyme arginase-2 (ARG2). Here we describe the existence of pro-inflammatory effector T-cells that recognize ARG2 and can directly target tumor and tumor-infiltrating cells. Using a librar...

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Autores principales: Weis-Banke, Stine Emilie, Hübbe, Mie Linder, Holmström, Morten Orebo, Jørgensen, Mia Aaboe, Bendtsen, Simone Kloch, Martinenaite, Evelina, Carretta, Marco, Svane, Inge Marie, Ødum, Niels, Pedersen, Ayako Wakatsuki, Met, Özcan, Madsen, Daniel Hargbøl, Andersen, Mads Hald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7458644/
https://www.ncbi.nlm.nih.gov/pubmed/32923127
http://dx.doi.org/10.1080/2162402X.2020.1771142
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author Weis-Banke, Stine Emilie
Hübbe, Mie Linder
Holmström, Morten Orebo
Jørgensen, Mia Aaboe
Bendtsen, Simone Kloch
Martinenaite, Evelina
Carretta, Marco
Svane, Inge Marie
Ødum, Niels
Pedersen, Ayako Wakatsuki
Met, Özcan
Madsen, Daniel Hargbøl
Andersen, Mads Hald
author_facet Weis-Banke, Stine Emilie
Hübbe, Mie Linder
Holmström, Morten Orebo
Jørgensen, Mia Aaboe
Bendtsen, Simone Kloch
Martinenaite, Evelina
Carretta, Marco
Svane, Inge Marie
Ødum, Niels
Pedersen, Ayako Wakatsuki
Met, Özcan
Madsen, Daniel Hargbøl
Andersen, Mads Hald
author_sort Weis-Banke, Stine Emilie
collection PubMed
description One way that tumors evade immune destruction is through tumor and stromal cell expression of arginine-degrading enzyme arginase-2 (ARG2). Here we describe the existence of pro-inflammatory effector T-cells that recognize ARG2 and can directly target tumor and tumor-infiltrating cells. Using a library of 34 peptides covering the entire ARG2 sequence, we examined reactivity toward these peptides in peripheral blood mononuclear cells from cancer patients and healthy individuals. Interferon-γ ELISPOT revealed frequent immune responses against several of the peptides, indicating that ARG2–specific self-reactive T-cells are natural components of the human T-cell repertoire. Based on this, the most immunogenic ARG2 protein region was further characterized. By identifying conditions in the microenvironment that induce ARG2 expression in myeloid cells, we showed that ARG2-specific CD4T-cells isolated and expanded from a peripheral pool from a prostate cancer patient could recognize target cells in an ARG2-dependent manner. In the ‘cold’ in vivo tumor model Lewis lung carcinoma, we found that activation of ARG2-specific T-cells by vaccination significantly inhibited tumor growth. Immune-modulatory vaccines targeting ARG2 thus are a candidate strategy for cancer immunotherapy.
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spelling pubmed-74586442020-09-11 The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines Weis-Banke, Stine Emilie Hübbe, Mie Linder Holmström, Morten Orebo Jørgensen, Mia Aaboe Bendtsen, Simone Kloch Martinenaite, Evelina Carretta, Marco Svane, Inge Marie Ødum, Niels Pedersen, Ayako Wakatsuki Met, Özcan Madsen, Daniel Hargbøl Andersen, Mads Hald Oncoimmunology Original Research One way that tumors evade immune destruction is through tumor and stromal cell expression of arginine-degrading enzyme arginase-2 (ARG2). Here we describe the existence of pro-inflammatory effector T-cells that recognize ARG2 and can directly target tumor and tumor-infiltrating cells. Using a library of 34 peptides covering the entire ARG2 sequence, we examined reactivity toward these peptides in peripheral blood mononuclear cells from cancer patients and healthy individuals. Interferon-γ ELISPOT revealed frequent immune responses against several of the peptides, indicating that ARG2–specific self-reactive T-cells are natural components of the human T-cell repertoire. Based on this, the most immunogenic ARG2 protein region was further characterized. By identifying conditions in the microenvironment that induce ARG2 expression in myeloid cells, we showed that ARG2-specific CD4T-cells isolated and expanded from a peripheral pool from a prostate cancer patient could recognize target cells in an ARG2-dependent manner. In the ‘cold’ in vivo tumor model Lewis lung carcinoma, we found that activation of ARG2-specific T-cells by vaccination significantly inhibited tumor growth. Immune-modulatory vaccines targeting ARG2 thus are a candidate strategy for cancer immunotherapy. Taylor & Francis 2020-06-01 /pmc/articles/PMC7458644/ /pubmed/32923127 http://dx.doi.org/10.1080/2162402X.2020.1771142 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
Weis-Banke, Stine Emilie
Hübbe, Mie Linder
Holmström, Morten Orebo
Jørgensen, Mia Aaboe
Bendtsen, Simone Kloch
Martinenaite, Evelina
Carretta, Marco
Svane, Inge Marie
Ødum, Niels
Pedersen, Ayako Wakatsuki
Met, Özcan
Madsen, Daniel Hargbøl
Andersen, Mads Hald
The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title_full The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title_fullStr The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title_full_unstemmed The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title_short The metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
title_sort metabolic enzyme arginase-2 is a potential target for novel immune modulatory vaccines
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7458644/
https://www.ncbi.nlm.nih.gov/pubmed/32923127
http://dx.doi.org/10.1080/2162402X.2020.1771142
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