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ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis

Alveolar macrophages (AMs) are critical for lung immune defense and homeostasis. They are orchestrators of chronic obstructive pulmonary disease (COPD), with their number significantly increased and functions altered in COPD. However, it is unclear how AM number and function are controlled in a heal...

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Autores principales: Lam, Terence Y. W., Nguyen, Ngan, Peh, Hong Yong, Shanmugasundaram, Mahalakshmi, Chandna, Ritu, Tee, Jong Huat, Ong, Chee Bing, Hossain, Md. Zakir, Venugopal, Shruthi, Zhang, Tianyi, Xu, Simin, Qiu, Tao, Kong, Wan Ting, Chakarov, Svetoslav, Srivastava, Supriya, Liao, Wupeng, Kim, Jin-Soo, Teh, Ming, Ginhoux, Florent, Fred Wong, W. S., Ge, Ruowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8794848/
https://www.ncbi.nlm.nih.gov/pubmed/35046017
http://dx.doi.org/10.1073/pnas.2019161119
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author Lam, Terence Y. W.
Nguyen, Ngan
Peh, Hong Yong
Shanmugasundaram, Mahalakshmi
Chandna, Ritu
Tee, Jong Huat
Ong, Chee Bing
Hossain, Md. Zakir
Venugopal, Shruthi
Zhang, Tianyi
Xu, Simin
Qiu, Tao
Kong, Wan Ting
Chakarov, Svetoslav
Srivastava, Supriya
Liao, Wupeng
Kim, Jin-Soo
Teh, Ming
Ginhoux, Florent
Fred Wong, W. S.
Ge, Ruowen
author_facet Lam, Terence Y. W.
Nguyen, Ngan
Peh, Hong Yong
Shanmugasundaram, Mahalakshmi
Chandna, Ritu
Tee, Jong Huat
Ong, Chee Bing
Hossain, Md. Zakir
Venugopal, Shruthi
Zhang, Tianyi
Xu, Simin
Qiu, Tao
Kong, Wan Ting
Chakarov, Svetoslav
Srivastava, Supriya
Liao, Wupeng
Kim, Jin-Soo
Teh, Ming
Ginhoux, Florent
Fred Wong, W. S.
Ge, Ruowen
author_sort Lam, Terence Y. W.
collection PubMed
description Alveolar macrophages (AMs) are critical for lung immune defense and homeostasis. They are orchestrators of chronic obstructive pulmonary disease (COPD), with their number significantly increased and functions altered in COPD. However, it is unclear how AM number and function are controlled in a healthy lung and if changes in AMs without environmental assault are sufficient to trigger lung inflammation and COPD. We report here that absence of isthmin 1 (ISM1) in mice (Ism1(−/−)) leads to increase in both AM number and functional heterogeneity, with enduring lung inflammation, progressive emphysema, and significant lung function decline, phenotypes similar to human COPD. We reveal that ISM1 is a lung resident anti-inflammatory protein that selectively triggers the apoptosis of AMs that harbor high levels of its receptor cell-surface GRP78 (csGRP78). csGRP78 is present at a heterogeneous level in the AMs of a healthy lung, but csGRP78(high) AMs are expanded in Ism1(−/−) mice, cigarette smoke (CS)-induced COPD mice, and human COPD lung, making these cells the prime targets of ISM1-mediated apoptosis. We show that csGRP78(high) AMs mostly express MMP-12, hence proinflammatory. Intratracheal delivery of recombinant ISM1 (rISM1) depleted csGRP78(high) AMs in both Ism1(−/−) and CS-induced COPD mice, blocked emphysema development, and preserved lung function. Consistently, ISM1 expression in human lungs positively correlates with AM apoptosis, suggesting similar function of ISM1–csGRP78 in human lungs. Our findings reveal that AM apoptosis regulation is an important physiological mechanism for maintaining lung homeostasis and demonstrate the potential of pulmonary-delivered rISM1 to target csGRP78 as a therapeutic strategy for COPD.
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spelling pubmed-87948482022-07-19 ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis Lam, Terence Y. W. Nguyen, Ngan Peh, Hong Yong Shanmugasundaram, Mahalakshmi Chandna, Ritu Tee, Jong Huat Ong, Chee Bing Hossain, Md. Zakir Venugopal, Shruthi Zhang, Tianyi Xu, Simin Qiu, Tao Kong, Wan Ting Chakarov, Svetoslav Srivastava, Supriya Liao, Wupeng Kim, Jin-Soo Teh, Ming Ginhoux, Florent Fred Wong, W. S. Ge, Ruowen Proc Natl Acad Sci U S A Biological Sciences Alveolar macrophages (AMs) are critical for lung immune defense and homeostasis. They are orchestrators of chronic obstructive pulmonary disease (COPD), with their number significantly increased and functions altered in COPD. However, it is unclear how AM number and function are controlled in a healthy lung and if changes in AMs without environmental assault are sufficient to trigger lung inflammation and COPD. We report here that absence of isthmin 1 (ISM1) in mice (Ism1(−/−)) leads to increase in both AM number and functional heterogeneity, with enduring lung inflammation, progressive emphysema, and significant lung function decline, phenotypes similar to human COPD. We reveal that ISM1 is a lung resident anti-inflammatory protein that selectively triggers the apoptosis of AMs that harbor high levels of its receptor cell-surface GRP78 (csGRP78). csGRP78 is present at a heterogeneous level in the AMs of a healthy lung, but csGRP78(high) AMs are expanded in Ism1(−/−) mice, cigarette smoke (CS)-induced COPD mice, and human COPD lung, making these cells the prime targets of ISM1-mediated apoptosis. We show that csGRP78(high) AMs mostly express MMP-12, hence proinflammatory. Intratracheal delivery of recombinant ISM1 (rISM1) depleted csGRP78(high) AMs in both Ism1(−/−) and CS-induced COPD mice, blocked emphysema development, and preserved lung function. Consistently, ISM1 expression in human lungs positively correlates with AM apoptosis, suggesting similar function of ISM1–csGRP78 in human lungs. Our findings reveal that AM apoptosis regulation is an important physiological mechanism for maintaining lung homeostasis and demonstrate the potential of pulmonary-delivered rISM1 to target csGRP78 as a therapeutic strategy for COPD. National Academy of Sciences 2022-01-19 2022-01-25 /pmc/articles/PMC8794848/ /pubmed/35046017 http://dx.doi.org/10.1073/pnas.2019161119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Lam, Terence Y. W.
Nguyen, Ngan
Peh, Hong Yong
Shanmugasundaram, Mahalakshmi
Chandna, Ritu
Tee, Jong Huat
Ong, Chee Bing
Hossain, Md. Zakir
Venugopal, Shruthi
Zhang, Tianyi
Xu, Simin
Qiu, Tao
Kong, Wan Ting
Chakarov, Svetoslav
Srivastava, Supriya
Liao, Wupeng
Kim, Jin-Soo
Teh, Ming
Ginhoux, Florent
Fred Wong, W. S.
Ge, Ruowen
ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title_full ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title_fullStr ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title_full_unstemmed ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title_short ISM1 protects lung homeostasis via cell-surface GRP78-mediated alveolar macrophage apoptosis
title_sort ism1 protects lung homeostasis via cell-surface grp78-mediated alveolar macrophage apoptosis
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8794848/
https://www.ncbi.nlm.nih.gov/pubmed/35046017
http://dx.doi.org/10.1073/pnas.2019161119
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