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ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1

PURPOSE: Macrophages are important regulators of environmental allergen-induced airway inflammation and asthma. ATP6V0d2 is a subunit of vacuolar ATPase highly expressed in macrophages. However, the functions of ATP6V0d2 in the regulation of pathogenesis of allergic asthma remain unclear. The aim of...

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Autores principales: Liu, Na, Feng, Yuchen, Liu, Huicheng, Wu, Wenliang, Liang, Yuxia, Li, Pingfei, Wei, Zhengping, Wu, Min, Tang, Zhao-Hui, Han, Junyan, Cheng, Xiang, Liu, Zheng, Laurence, Arian, Li, Huabin, Zhen, Guohua, Yang, Xiang-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Academy of Asthma, Allergy and Clinical Immunology; The Korean Academy of Pediatric Allergy and Respiratory Disease 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7984956/
https://www.ncbi.nlm.nih.gov/pubmed/33733641
http://dx.doi.org/10.4168/aair.2021.13.3.479
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author Liu, Na
Feng, Yuchen
Liu, Huicheng
Wu, Wenliang
Liang, Yuxia
Li, Pingfei
Wei, Zhengping
Wu, Min
Tang, Zhao-Hui
Han, Junyan
Cheng, Xiang
Liu, Zheng
Laurence, Arian
Li, Huabin
Zhen, Guohua
Yang, Xiang-Ping
author_facet Liu, Na
Feng, Yuchen
Liu, Huicheng
Wu, Wenliang
Liang, Yuxia
Li, Pingfei
Wei, Zhengping
Wu, Min
Tang, Zhao-Hui
Han, Junyan
Cheng, Xiang
Liu, Zheng
Laurence, Arian
Li, Huabin
Zhen, Guohua
Yang, Xiang-Ping
author_sort Liu, Na
collection PubMed
description PURPOSE: Macrophages are important regulators of environmental allergen-induced airway inflammation and asthma. ATP6V0d2 is a subunit of vacuolar ATPase highly expressed in macrophages. However, the functions of ATP6V0d2 in the regulation of pathogenesis of allergic asthma remain unclear. The aim of this study is to determine the function and related molecular mechanisms of macrophage protein ATP6V0d2 in allergic asthma. METHODS: We compared the disease severity between female C57BL/6 wild-type and ATP6V0d2(−/−) mice in an ovalbumin (OVA)-induced asthma model. We also investigated the association of expression of ATP6V0d2, PU.1 and CCL17 with disease severity among asthmatic patients. RESULTS: The expression of ATP6V0d2 in sputum cells of asthmatic patients and in the lungs of OVA-challenged mice was enhanced compared to healthy subjects and their counterparts, respectively. However, ATP6V0d2-deficient mice exaggerated inflammatory cell infiltration as well as enhanced alternative activated macrophage (AAM) polarization and mucus production in an OVA-induced asthma model. Furthermore, we found that Atp6v0d2 promoted lysosomal degradation of Pu.1, which induced AAM polarization and Ccl17 production. Among asthma patients, ATP6V0d2 expression was inversely associated with disease severity, whereas PU.1 and CCL17 expression was positively associated with disease severity. CONCLUSIONS: Our results identify macrophage Atp6v0d2, as an induced feedback inhibitor of asthma disease severity by promoting Pu.1 lysosomal degradation, which may in turn leads to reduced AAM polarization and Ccl17 production.
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spelling pubmed-79849562021-05-01 ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1 Liu, Na Feng, Yuchen Liu, Huicheng Wu, Wenliang Liang, Yuxia Li, Pingfei Wei, Zhengping Wu, Min Tang, Zhao-Hui Han, Junyan Cheng, Xiang Liu, Zheng Laurence, Arian Li, Huabin Zhen, Guohua Yang, Xiang-Ping Allergy Asthma Immunol Res Original Article PURPOSE: Macrophages are important regulators of environmental allergen-induced airway inflammation and asthma. ATP6V0d2 is a subunit of vacuolar ATPase highly expressed in macrophages. However, the functions of ATP6V0d2 in the regulation of pathogenesis of allergic asthma remain unclear. The aim of this study is to determine the function and related molecular mechanisms of macrophage protein ATP6V0d2 in allergic asthma. METHODS: We compared the disease severity between female C57BL/6 wild-type and ATP6V0d2(−/−) mice in an ovalbumin (OVA)-induced asthma model. We also investigated the association of expression of ATP6V0d2, PU.1 and CCL17 with disease severity among asthmatic patients. RESULTS: The expression of ATP6V0d2 in sputum cells of asthmatic patients and in the lungs of OVA-challenged mice was enhanced compared to healthy subjects and their counterparts, respectively. However, ATP6V0d2-deficient mice exaggerated inflammatory cell infiltration as well as enhanced alternative activated macrophage (AAM) polarization and mucus production in an OVA-induced asthma model. Furthermore, we found that Atp6v0d2 promoted lysosomal degradation of Pu.1, which induced AAM polarization and Ccl17 production. Among asthma patients, ATP6V0d2 expression was inversely associated with disease severity, whereas PU.1 and CCL17 expression was positively associated with disease severity. CONCLUSIONS: Our results identify macrophage Atp6v0d2, as an induced feedback inhibitor of asthma disease severity by promoting Pu.1 lysosomal degradation, which may in turn leads to reduced AAM polarization and Ccl17 production. The Korean Academy of Asthma, Allergy and Clinical Immunology; The Korean Academy of Pediatric Allergy and Respiratory Disease 2020-11-25 /pmc/articles/PMC7984956/ /pubmed/33733641 http://dx.doi.org/10.4168/aair.2021.13.3.479 Text en Copyright © 2021 The Korean Academy of Asthma, Allergy and Clinical Immunology • The Korean Academy of Pediatric Allergy and Respiratory Disease https://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (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 Article
Liu, Na
Feng, Yuchen
Liu, Huicheng
Wu, Wenliang
Liang, Yuxia
Li, Pingfei
Wei, Zhengping
Wu, Min
Tang, Zhao-Hui
Han, Junyan
Cheng, Xiang
Liu, Zheng
Laurence, Arian
Li, Huabin
Zhen, Guohua
Yang, Xiang-Ping
ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title_full ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title_fullStr ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title_full_unstemmed ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title_short ATP6V0d2 Suppresses Alveoli Macrophage Alternative Polarization and Allergic Asthma via Degradation of PU.1
title_sort atp6v0d2 suppresses alveoli macrophage alternative polarization and allergic asthma via degradation of pu.1
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7984956/
https://www.ncbi.nlm.nih.gov/pubmed/33733641
http://dx.doi.org/10.4168/aair.2021.13.3.479
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