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MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis

The mesencephalic astrocyte-derived neurotrophic factor (MANF) has been recently identified as a neurotrophic factor, but its role in hepatic fibrosis is unknown. Here, we found that MANF was upregulated in the fibrotic liver tissues of the patients with chronic liver diseases and of mice treated wi...

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Autores principales: Hou, Chao, Wang, Dong, Zhao, Mingxia, Ballar, Petek, Zhang, Xinru, Mei, Qiong, Wang, Wei, Li, Xiang, Sheng, Qiang, Liu, Jun, Wei, Chuansheng, Shen, Yujun, Yang, Yi, Wang, Peng, Shao, Juntang, Xu, Sa, Wang, Fuyan, Sun, Yang, Shen, Yuxian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10547964/
https://www.ncbi.nlm.nih.gov/pubmed/37799387
http://dx.doi.org/10.1016/j.apsb.2023.07.027
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author Hou, Chao
Wang, Dong
Zhao, Mingxia
Ballar, Petek
Zhang, Xinru
Mei, Qiong
Wang, Wei
Li, Xiang
Sheng, Qiang
Liu, Jun
Wei, Chuansheng
Shen, Yujun
Yang, Yi
Wang, Peng
Shao, Juntang
Xu, Sa
Wang, Fuyan
Sun, Yang
Shen, Yuxian
author_facet Hou, Chao
Wang, Dong
Zhao, Mingxia
Ballar, Petek
Zhang, Xinru
Mei, Qiong
Wang, Wei
Li, Xiang
Sheng, Qiang
Liu, Jun
Wei, Chuansheng
Shen, Yujun
Yang, Yi
Wang, Peng
Shao, Juntang
Xu, Sa
Wang, Fuyan
Sun, Yang
Shen, Yuxian
author_sort Hou, Chao
collection PubMed
description The mesencephalic astrocyte-derived neurotrophic factor (MANF) has been recently identified as a neurotrophic factor, but its role in hepatic fibrosis is unknown. Here, we found that MANF was upregulated in the fibrotic liver tissues of the patients with chronic liver diseases and of mice treated with CCl(4). MANF deficiency in either hepatocytes or hepatic mono-macrophages, particularly in hepatic mono-macrophages, clearly exacerbated hepatic fibrosis. Myeloid-specific MANF knockout increased the population of hepatic Ly6C(high) macrophages and promoted HSCs activation. Furthermore, MANF-sufficient macrophages (from WT mice) transfusion ameliorated CCl(4)-induced hepatic fibrosis in myeloid cells-specific MANF knockout (MKO) mice. Mechanistically, MANF interacted with S100A8 to competitively block S100A8/A9 heterodimer formation and inhibited S100A8/A9-mediated TLR4–NF-κB signal activation. Pharmacologically, systemic administration of recombinant human MANF significantly alleviated CCl(4)-induced hepatic fibrosis in both WT and hepatocytes-specific MANF knockout (HKO) mice. This study reveals a mechanism by which MANF targets S100A8/A9-TLR4 as a “brake” on the upstream of NF-κB pathway, which exerts an impact on macrophage differentiation and shed light on hepatic fibrosis treatment.
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spelling pubmed-105479642023-10-05 MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis Hou, Chao Wang, Dong Zhao, Mingxia Ballar, Petek Zhang, Xinru Mei, Qiong Wang, Wei Li, Xiang Sheng, Qiang Liu, Jun Wei, Chuansheng Shen, Yujun Yang, Yi Wang, Peng Shao, Juntang Xu, Sa Wang, Fuyan Sun, Yang Shen, Yuxian Acta Pharm Sin B Original Article The mesencephalic astrocyte-derived neurotrophic factor (MANF) has been recently identified as a neurotrophic factor, but its role in hepatic fibrosis is unknown. Here, we found that MANF was upregulated in the fibrotic liver tissues of the patients with chronic liver diseases and of mice treated with CCl(4). MANF deficiency in either hepatocytes or hepatic mono-macrophages, particularly in hepatic mono-macrophages, clearly exacerbated hepatic fibrosis. Myeloid-specific MANF knockout increased the population of hepatic Ly6C(high) macrophages and promoted HSCs activation. Furthermore, MANF-sufficient macrophages (from WT mice) transfusion ameliorated CCl(4)-induced hepatic fibrosis in myeloid cells-specific MANF knockout (MKO) mice. Mechanistically, MANF interacted with S100A8 to competitively block S100A8/A9 heterodimer formation and inhibited S100A8/A9-mediated TLR4–NF-κB signal activation. Pharmacologically, systemic administration of recombinant human MANF significantly alleviated CCl(4)-induced hepatic fibrosis in both WT and hepatocytes-specific MANF knockout (HKO) mice. This study reveals a mechanism by which MANF targets S100A8/A9-TLR4 as a “brake” on the upstream of NF-κB pathway, which exerts an impact on macrophage differentiation and shed light on hepatic fibrosis treatment. Elsevier 2023-10 2023-08-01 /pmc/articles/PMC10547964/ /pubmed/37799387 http://dx.doi.org/10.1016/j.apsb.2023.07.027 Text en © 2023 Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences. Production and hosting by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Hou, Chao
Wang, Dong
Zhao, Mingxia
Ballar, Petek
Zhang, Xinru
Mei, Qiong
Wang, Wei
Li, Xiang
Sheng, Qiang
Liu, Jun
Wei, Chuansheng
Shen, Yujun
Yang, Yi
Wang, Peng
Shao, Juntang
Xu, Sa
Wang, Fuyan
Sun, Yang
Shen, Yuxian
MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title_full MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title_fullStr MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title_full_unstemmed MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title_short MANF brakes TLR4 signaling by competitively binding S100A8 with S100A9 to regulate macrophage phenotypes in hepatic fibrosis
title_sort manf brakes tlr4 signaling by competitively binding s100a8 with s100a9 to regulate macrophage phenotypes in hepatic fibrosis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10547964/
https://www.ncbi.nlm.nih.gov/pubmed/37799387
http://dx.doi.org/10.1016/j.apsb.2023.07.027
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