Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals

The role of nutrient-sensing pathways in regulation of innate immune response is unexplored. Here the authors show that IL-4 activates the amino-acid sensing pathway in macrophages and leads to polarization of anti-inflammatory M2 macrophages via the transcription factor liver X receptor.

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Autores principales: Tetsuya Kimura, Shigeyuki Nada, Noriko Takegahara, Tatsusada Okuno, Satoshi Nojima, Sujin Kang, Daisuke Ito, Keiko Morimoto, Takashi Hosokawa, Yoshitomo Hayama, Yuichi Mitsui, Natsuki Sakurai, Hana Sarashina-Kida, Masayuki Nishide, Yohei Maeda, Hyota Takamatsu, Daisuke Okuzaki, Masaki Yamada, Masato Okada, Atsushi Kumanogoh
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/924eb32133c34310becad7e489a068dc
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spelling oai:doaj.org-article:924eb32133c34310becad7e489a068dc2021-12-02T17:32:20ZPolarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals10.1038/ncomms131302041-1723https://doaj.org/article/924eb32133c34310becad7e489a068dc2016-10-01T00:00:00Zhttps://doi.org/10.1038/ncomms13130https://doaj.org/toc/2041-1723The role of nutrient-sensing pathways in regulation of innate immune response is unexplored. Here the authors show that IL-4 activates the amino-acid sensing pathway in macrophages and leads to polarization of anti-inflammatory M2 macrophages via the transcription factor liver X receptor.Tetsuya KimuraShigeyuki NadaNoriko TakegaharaTatsusada OkunoSatoshi NojimaSujin KangDaisuke ItoKeiko MorimotoTakashi HosokawaYoshitomo HayamaYuichi MitsuiNatsuki SakuraiHana Sarashina-KidaMasayuki NishideYohei MaedaHyota TakamatsuDaisuke OkuzakiMasaki YamadaMasato OkadaAtsushi KumanogohNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-17 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Tetsuya Kimura
Shigeyuki Nada
Noriko Takegahara
Tatsusada Okuno
Satoshi Nojima
Sujin Kang
Daisuke Ito
Keiko Morimoto
Takashi Hosokawa
Yoshitomo Hayama
Yuichi Mitsui
Natsuki Sakurai
Hana Sarashina-Kida
Masayuki Nishide
Yohei Maeda
Hyota Takamatsu
Daisuke Okuzaki
Masaki Yamada
Masato Okada
Atsushi Kumanogoh
Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
description The role of nutrient-sensing pathways in regulation of innate immune response is unexplored. Here the authors show that IL-4 activates the amino-acid sensing pathway in macrophages and leads to polarization of anti-inflammatory M2 macrophages via the transcription factor liver X receptor.
format article
author Tetsuya Kimura
Shigeyuki Nada
Noriko Takegahara
Tatsusada Okuno
Satoshi Nojima
Sujin Kang
Daisuke Ito
Keiko Morimoto
Takashi Hosokawa
Yoshitomo Hayama
Yuichi Mitsui
Natsuki Sakurai
Hana Sarashina-Kida
Masayuki Nishide
Yohei Maeda
Hyota Takamatsu
Daisuke Okuzaki
Masaki Yamada
Masato Okada
Atsushi Kumanogoh
author_facet Tetsuya Kimura
Shigeyuki Nada
Noriko Takegahara
Tatsusada Okuno
Satoshi Nojima
Sujin Kang
Daisuke Ito
Keiko Morimoto
Takashi Hosokawa
Yoshitomo Hayama
Yuichi Mitsui
Natsuki Sakurai
Hana Sarashina-Kida
Masayuki Nishide
Yohei Maeda
Hyota Takamatsu
Daisuke Okuzaki
Masaki Yamada
Masato Okada
Atsushi Kumanogoh
author_sort Tetsuya Kimura
title Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
title_short Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
title_full Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
title_fullStr Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
title_full_unstemmed Polarization of M2 macrophages requires Lamtor1 that integrates cytokine and amino-acid signals
title_sort polarization of m2 macrophages requires lamtor1 that integrates cytokine and amino-acid signals
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/924eb32133c34310becad7e489a068dc
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