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TLR4/MD-2 is a receptor for extracellular nucleophosmin 1

Nucleophosmin 1 (NPM1) primarily localizes to the nucleus and is passively released into the extracellular milieu by necrotic or damaged cells, or is secreted by monocytes and macrophages. Extracellular NPM1 acts as a potent inflammatory stimulator by promoting cytokine production [e.g., tumor necro...

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Autores principales: Nakatomi, Kota, Ueno, Hikari, Ishikawa, Yuto, Salim, Ronny Christiadi, Mori, Yuki, Kanemoto, Issey, Tancharoen, Salunya, Kikuchi, Kiyoshi, Miura, Naoki, Omori, Taketo, Okuda-Ashitaka, Emiko, Matsumura, Kiyoshi, Imaizumi, Hitoshi, Motomiya, Yoshihiro, Maruyama, Ikuro, Kawahara, Ko-Ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7739869/
https://www.ncbi.nlm.nih.gov/pubmed/33335727
http://dx.doi.org/10.3892/br.2020.1397
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author Nakatomi, Kota
Ueno, Hikari
Ishikawa, Yuto
Salim, Ronny Christiadi
Mori, Yuki
Kanemoto, Issey
Tancharoen, Salunya
Kikuchi, Kiyoshi
Miura, Naoki
Omori, Taketo
Okuda-Ashitaka, Emiko
Matsumura, Kiyoshi
Imaizumi, Hitoshi
Motomiya, Yoshihiro
Maruyama, Ikuro
Kawahara, Ko-Ichi
author_facet Nakatomi, Kota
Ueno, Hikari
Ishikawa, Yuto
Salim, Ronny Christiadi
Mori, Yuki
Kanemoto, Issey
Tancharoen, Salunya
Kikuchi, Kiyoshi
Miura, Naoki
Omori, Taketo
Okuda-Ashitaka, Emiko
Matsumura, Kiyoshi
Imaizumi, Hitoshi
Motomiya, Yoshihiro
Maruyama, Ikuro
Kawahara, Ko-Ichi
author_sort Nakatomi, Kota
collection PubMed
description Nucleophosmin 1 (NPM1) primarily localizes to the nucleus and is passively released into the extracellular milieu by necrotic or damaged cells, or is secreted by monocytes and macrophages. Extracellular NPM1 acts as a potent inflammatory stimulator by promoting cytokine production [e.g., tumor necrosis factor-α (TNF-α)], which suggests that NPM1 acts as a damage-associated molecular pattern. However, the receptor of NPM1 is unknown. Evidence indicates that DAMPs, which include high mobility group box 1 and histones, may bind Toll-like receptors (TLRs). In the present study, it was shown that NPM1 signaling was mediated via the TLR4 pathway, which suggests that TLR4 is an NPM1 receptor. TLR4 binds myeloid differentiation protein-2 (MD-2), which is essential for intracellular signaling. Furthermore, the TLR4 antagonist, LPS-Rhodobacter sphaeroides (an MD-2 antagonist) and TAK-242 (a TLR4 signaling inhibitor) significantly inhibited NPM1-induced TNF-α production by differentiated THP-1 cells as well as reducing ERK1/2 activation. Far-western blot analysis revealed that NPM1 directly bound MD-2. Thus, the results of the present study provide compelling evidence that TLR4 binds NPM1, and it is hypothesized that inhibiting NPM1 activity may serve as a novel strategy for treating TLR4-related diseases.
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spelling pubmed-77398692020-12-16 TLR4/MD-2 is a receptor for extracellular nucleophosmin 1 Nakatomi, Kota Ueno, Hikari Ishikawa, Yuto Salim, Ronny Christiadi Mori, Yuki Kanemoto, Issey Tancharoen, Salunya Kikuchi, Kiyoshi Miura, Naoki Omori, Taketo Okuda-Ashitaka, Emiko Matsumura, Kiyoshi Imaizumi, Hitoshi Motomiya, Yoshihiro Maruyama, Ikuro Kawahara, Ko-Ichi Biomed Rep Articles Nucleophosmin 1 (NPM1) primarily localizes to the nucleus and is passively released into the extracellular milieu by necrotic or damaged cells, or is secreted by monocytes and macrophages. Extracellular NPM1 acts as a potent inflammatory stimulator by promoting cytokine production [e.g., tumor necrosis factor-α (TNF-α)], which suggests that NPM1 acts as a damage-associated molecular pattern. However, the receptor of NPM1 is unknown. Evidence indicates that DAMPs, which include high mobility group box 1 and histones, may bind Toll-like receptors (TLRs). In the present study, it was shown that NPM1 signaling was mediated via the TLR4 pathway, which suggests that TLR4 is an NPM1 receptor. TLR4 binds myeloid differentiation protein-2 (MD-2), which is essential for intracellular signaling. Furthermore, the TLR4 antagonist, LPS-Rhodobacter sphaeroides (an MD-2 antagonist) and TAK-242 (a TLR4 signaling inhibitor) significantly inhibited NPM1-induced TNF-α production by differentiated THP-1 cells as well as reducing ERK1/2 activation. Far-western blot analysis revealed that NPM1 directly bound MD-2. Thus, the results of the present study provide compelling evidence that TLR4 binds NPM1, and it is hypothesized that inhibiting NPM1 activity may serve as a novel strategy for treating TLR4-related diseases. D.A. Spandidos 2021-02 2020-12-02 /pmc/articles/PMC7739869/ /pubmed/33335727 http://dx.doi.org/10.3892/br.2020.1397 Text en Copyright: © Nakatomi et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Nakatomi, Kota
Ueno, Hikari
Ishikawa, Yuto
Salim, Ronny Christiadi
Mori, Yuki
Kanemoto, Issey
Tancharoen, Salunya
Kikuchi, Kiyoshi
Miura, Naoki
Omori, Taketo
Okuda-Ashitaka, Emiko
Matsumura, Kiyoshi
Imaizumi, Hitoshi
Motomiya, Yoshihiro
Maruyama, Ikuro
Kawahara, Ko-Ichi
TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title_full TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title_fullStr TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title_full_unstemmed TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title_short TLR4/MD-2 is a receptor for extracellular nucleophosmin 1
title_sort tlr4/md-2 is a receptor for extracellular nucleophosmin 1
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7739869/
https://www.ncbi.nlm.nih.gov/pubmed/33335727
http://dx.doi.org/10.3892/br.2020.1397
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