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HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression

Backgrounds and Aims: Hepatocyte Growth Factor (HGF)-MET signaling is known to promote biological functions such as cell survival, cell motility, and cell proliferation. However, it is unknown if HGF-MET alters the macrophage phenotype. In this study, we aimed to study the effects of HGF-MET signali...

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Autores principales: Nishikoba, Nao, Kumagai, Kotaro, Kanmura, Shuji, Nakamura, Yuko, Ono, Mayumi, Eguchi, Hiromi, Kamibayashiyama, Tomomi, Oda, Kohei, Mawatari, Seiichi, Tanoue, Shiroh, Hashimoto, Shinichi, Tsubouchi, Hirohito, Ido, Akio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7492554/
https://www.ncbi.nlm.nih.gov/pubmed/32983173
http://dx.doi.org/10.3389/fimmu.2020.02135
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author Nishikoba, Nao
Kumagai, Kotaro
Kanmura, Shuji
Nakamura, Yuko
Ono, Mayumi
Eguchi, Hiromi
Kamibayashiyama, Tomomi
Oda, Kohei
Mawatari, Seiichi
Tanoue, Shiroh
Hashimoto, Shinichi
Tsubouchi, Hirohito
Ido, Akio
author_facet Nishikoba, Nao
Kumagai, Kotaro
Kanmura, Shuji
Nakamura, Yuko
Ono, Mayumi
Eguchi, Hiromi
Kamibayashiyama, Tomomi
Oda, Kohei
Mawatari, Seiichi
Tanoue, Shiroh
Hashimoto, Shinichi
Tsubouchi, Hirohito
Ido, Akio
author_sort Nishikoba, Nao
collection PubMed
description Backgrounds and Aims: Hepatocyte Growth Factor (HGF)-MET signaling is known to promote biological functions such as cell survival, cell motility, and cell proliferation. However, it is unknown if HGF-MET alters the macrophage phenotype. In this study, we aimed to study the effects of HGF-MET signaling on the M1 macrophage phenotype. Methods and Materials: Bone marrow-derived macrophages (BMDMs) isolated from mice were either polarized to an M1 phenotype by IFN-γ and LPS treatment or to an M2 phenotype by IL-4 treatment. Changes in M1 or M2 markers induced by HGF-MET signaling were evaluated. Mechanisms responsible for alternations in the macrophage phenotype and intracellular metabolism were analyzed. Results: c-Met was expressed especially in M1 macrophages polarized by treatment with IFN-γ and LPS. In M1 macrophages, HGF-MET signaling induced the expression of Arg-1 mRNA and secretion of IL-10 and TGF-β1 and downregulated the mRNA expression of iNOS, TNF-α, and IL-6. In addition, activation of the PI3K pathway and inactivation of NFκB were also observed in M1 macrophages treated with HGF. The increased Arg-1 expression and IL-10 secretion were abrogated by PI3K inhibition, whereas, no changes were observed in TNF-α and IL-6 expression. The inactivation of NFκB was found to be independent of the PI3K pathway. HGF-MET signaling shifted the M1 macrophages to an M2-like phenotype, mainly through PI3K-mediated induction of Arg-1 expression. Finally, HGF-MET signaling also shifted the M1 macrophage intracellular metabolism toward an M2 phenotype, especially with respect to fatty acid metabolism. Conclusion: Our results suggested that HGF treatment not only promotes regeneration in epithelial cells, but also leads to tissue repair by altering M1 macrophages to an M2-like phenotype.
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spelling pubmed-74925542020-09-25 HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression Nishikoba, Nao Kumagai, Kotaro Kanmura, Shuji Nakamura, Yuko Ono, Mayumi Eguchi, Hiromi Kamibayashiyama, Tomomi Oda, Kohei Mawatari, Seiichi Tanoue, Shiroh Hashimoto, Shinichi Tsubouchi, Hirohito Ido, Akio Front Immunol Immunology Backgrounds and Aims: Hepatocyte Growth Factor (HGF)-MET signaling is known to promote biological functions such as cell survival, cell motility, and cell proliferation. However, it is unknown if HGF-MET alters the macrophage phenotype. In this study, we aimed to study the effects of HGF-MET signaling on the M1 macrophage phenotype. Methods and Materials: Bone marrow-derived macrophages (BMDMs) isolated from mice were either polarized to an M1 phenotype by IFN-γ and LPS treatment or to an M2 phenotype by IL-4 treatment. Changes in M1 or M2 markers induced by HGF-MET signaling were evaluated. Mechanisms responsible for alternations in the macrophage phenotype and intracellular metabolism were analyzed. Results: c-Met was expressed especially in M1 macrophages polarized by treatment with IFN-γ and LPS. In M1 macrophages, HGF-MET signaling induced the expression of Arg-1 mRNA and secretion of IL-10 and TGF-β1 and downregulated the mRNA expression of iNOS, TNF-α, and IL-6. In addition, activation of the PI3K pathway and inactivation of NFκB were also observed in M1 macrophages treated with HGF. The increased Arg-1 expression and IL-10 secretion were abrogated by PI3K inhibition, whereas, no changes were observed in TNF-α and IL-6 expression. The inactivation of NFκB was found to be independent of the PI3K pathway. HGF-MET signaling shifted the M1 macrophages to an M2-like phenotype, mainly through PI3K-mediated induction of Arg-1 expression. Finally, HGF-MET signaling also shifted the M1 macrophage intracellular metabolism toward an M2 phenotype, especially with respect to fatty acid metabolism. Conclusion: Our results suggested that HGF treatment not only promotes regeneration in epithelial cells, but also leads to tissue repair by altering M1 macrophages to an M2-like phenotype. Frontiers Media S.A. 2020-09-02 /pmc/articles/PMC7492554/ /pubmed/32983173 http://dx.doi.org/10.3389/fimmu.2020.02135 Text en Copyright © 2020 Nishikoba, Kumagai, Kanmura, Nakamura, Ono, Eguchi, Kamibayashiyama, Oda, Mawatari, Tanoue, Hashimoto, Tsubouchi and Ido. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Nishikoba, Nao
Kumagai, Kotaro
Kanmura, Shuji
Nakamura, Yuko
Ono, Mayumi
Eguchi, Hiromi
Kamibayashiyama, Tomomi
Oda, Kohei
Mawatari, Seiichi
Tanoue, Shiroh
Hashimoto, Shinichi
Tsubouchi, Hirohito
Ido, Akio
HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title_full HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title_fullStr HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title_full_unstemmed HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title_short HGF-MET Signaling Shifts M1 Macrophages Toward an M2-Like Phenotype Through PI3K-Mediated Induction of Arginase-1 Expression
title_sort hgf-met signaling shifts m1 macrophages toward an m2-like phenotype through pi3k-mediated induction of arginase-1 expression
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7492554/
https://www.ncbi.nlm.nih.gov/pubmed/32983173
http://dx.doi.org/10.3389/fimmu.2020.02135
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