Cargando…

Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis

Extracellular vesicles (EVs), such as exosomes and microvesicles, encapsulate proteins and microRNAs (miRNAs) as new modulators of both intercellular crosstalk and disease pathogenesis. The composition of EVs is modified by various triggers to maintain physiological homeostasis. In response to cigar...

Descripción completa

Detalles Bibliográficos
Autores principales: Fujita, Yu, Araya, Jun, Ito, Saburo, Kobayashi, Kenji, Kosaka, Nobuyoshi, Yoshioka, Yusuke, Kadota, Tsukasa, Hara, Hiromichi, Kuwano, Kazuyoshi, Ochiya, Takahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Co-Action Publishing 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643181/
https://www.ncbi.nlm.nih.gov/pubmed/26563733
http://dx.doi.org/10.3402/jev.v4.28388
_version_ 1782400485155667968
author Fujita, Yu
Araya, Jun
Ito, Saburo
Kobayashi, Kenji
Kosaka, Nobuyoshi
Yoshioka, Yusuke
Kadota, Tsukasa
Hara, Hiromichi
Kuwano, Kazuyoshi
Ochiya, Takahiro
author_facet Fujita, Yu
Araya, Jun
Ito, Saburo
Kobayashi, Kenji
Kosaka, Nobuyoshi
Yoshioka, Yusuke
Kadota, Tsukasa
Hara, Hiromichi
Kuwano, Kazuyoshi
Ochiya, Takahiro
author_sort Fujita, Yu
collection PubMed
description Extracellular vesicles (EVs), such as exosomes and microvesicles, encapsulate proteins and microRNAs (miRNAs) as new modulators of both intercellular crosstalk and disease pathogenesis. The composition of EVs is modified by various triggers to maintain physiological homeostasis. In response to cigarette smoke exposure, the lungs develop emphysema, myofibroblast accumulation and airway remodelling, which contribute to chronic obstructive pulmonary disease (COPD). However, the lung disease pathogenesis through modified EVs in stress physiology is not understood. Here, we investigated an EV-mediated intercellular communication mechanism between primary human bronchial epithelial cells (HBECs) and lung fibroblasts (LFs) and discovered that cigarette smoke extract (CSE)-induced HBEC-derived EVs promote myofibroblast differentiation in LFs. Thorough evaluations of the modified EVs and COPD lung samples showed that cigarette smoke induced relative upregulation of cellular and EV miR-210 expression of bronchial epithelial cells. Using co-culture assays, we showed that HBEC-derived EV miR-210 promotes myofibroblast differentiation in LFs. Surprisingly, we found that miR-210 directly regulates autophagy processes via targeting ATG7, and expression levels of miR-210 are inversely correlated with ATG7 expression in LFs. Importantly, autophagy induction was significantly decreased in LFs from COPD patients, and silencing ATG7 in LFs led to myofibroblast differentiation. These findings demonstrate that CSE triggers the modification of EV components and identify bronchial epithelial cell-derived miR-210 as a paracrine autophagy mediator of myofibroblast differentiation that has potential as a therapeutic target for COPD. Our findings show that stressor exposure changes EV compositions as emerging factors, potentially controlling pathological disorders such as airway remodelling in COPD.
format Online
Article
Text
id pubmed-4643181
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Co-Action Publishing
record_format MEDLINE/PubMed
spelling pubmed-46431812015-12-10 Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis Fujita, Yu Araya, Jun Ito, Saburo Kobayashi, Kenji Kosaka, Nobuyoshi Yoshioka, Yusuke Kadota, Tsukasa Hara, Hiromichi Kuwano, Kazuyoshi Ochiya, Takahiro J Extracell Vesicles Original Research Article Extracellular vesicles (EVs), such as exosomes and microvesicles, encapsulate proteins and microRNAs (miRNAs) as new modulators of both intercellular crosstalk and disease pathogenesis. The composition of EVs is modified by various triggers to maintain physiological homeostasis. In response to cigarette smoke exposure, the lungs develop emphysema, myofibroblast accumulation and airway remodelling, which contribute to chronic obstructive pulmonary disease (COPD). However, the lung disease pathogenesis through modified EVs in stress physiology is not understood. Here, we investigated an EV-mediated intercellular communication mechanism between primary human bronchial epithelial cells (HBECs) and lung fibroblasts (LFs) and discovered that cigarette smoke extract (CSE)-induced HBEC-derived EVs promote myofibroblast differentiation in LFs. Thorough evaluations of the modified EVs and COPD lung samples showed that cigarette smoke induced relative upregulation of cellular and EV miR-210 expression of bronchial epithelial cells. Using co-culture assays, we showed that HBEC-derived EV miR-210 promotes myofibroblast differentiation in LFs. Surprisingly, we found that miR-210 directly regulates autophagy processes via targeting ATG7, and expression levels of miR-210 are inversely correlated with ATG7 expression in LFs. Importantly, autophagy induction was significantly decreased in LFs from COPD patients, and silencing ATG7 in LFs led to myofibroblast differentiation. These findings demonstrate that CSE triggers the modification of EV components and identify bronchial epithelial cell-derived miR-210 as a paracrine autophagy mediator of myofibroblast differentiation that has potential as a therapeutic target for COPD. Our findings show that stressor exposure changes EV compositions as emerging factors, potentially controlling pathological disorders such as airway remodelling in COPD. Co-Action Publishing 2015-11-11 /pmc/articles/PMC4643181/ /pubmed/26563733 http://dx.doi.org/10.3402/jev.v4.28388 Text en © 2015 Yu Fujita et al. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License, permitting all non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research Article
Fujita, Yu
Araya, Jun
Ito, Saburo
Kobayashi, Kenji
Kosaka, Nobuyoshi
Yoshioka, Yusuke
Kadota, Tsukasa
Hara, Hiromichi
Kuwano, Kazuyoshi
Ochiya, Takahiro
Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title_full Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title_fullStr Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title_full_unstemmed Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title_short Suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in COPD pathogenesis
title_sort suppression of autophagy by extracellular vesicles promotes myofibroblast differentiation in copd pathogenesis
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643181/
https://www.ncbi.nlm.nih.gov/pubmed/26563733
http://dx.doi.org/10.3402/jev.v4.28388
work_keys_str_mv AT fujitayu suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT arayajun suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT itosaburo suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT kobayashikenji suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT kosakanobuyoshi suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT yoshiokayusuke suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT kadotatsukasa suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT harahiromichi suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT kuwanokazuyoshi suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis
AT ochiyatakahiro suppressionofautophagybyextracellularvesiclespromotesmyofibroblastdifferentiationincopdpathogenesis