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High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia

Sonic hedgehog (SHH) is abundantly expressed and critical for morphogenesis in embryonic lungs, however, SHH expression drops to a much lower level in mice from E17.5 and in humans from the 21st gestational week. We find that SHH expression is robustly up-regulated in the airway epithelia of childre...

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Autores principales: Xu, Chengyun, Zou, Chaochun, Hussain, Musaddique, Shi, Wei, Shao, Yanan, Jiang, Ziyan, Wu, Xiling, Lu, Meiping, Wu, Junsong, Xie, Qiangmin, Ke, Yuehai, Long, Fanxin, Tang, Lanfang, Wu, Ximei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160330/
https://www.ncbi.nlm.nih.gov/pubmed/29867080
http://dx.doi.org/10.1038/s41385-018-0033-4
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author Xu, Chengyun
Zou, Chaochun
Hussain, Musaddique
Shi, Wei
Shao, Yanan
Jiang, Ziyan
Wu, Xiling
Lu, Meiping
Wu, Junsong
Xie, Qiangmin
Ke, Yuehai
Long, Fanxin
Tang, Lanfang
Wu, Ximei
author_facet Xu, Chengyun
Zou, Chaochun
Hussain, Musaddique
Shi, Wei
Shao, Yanan
Jiang, Ziyan
Wu, Xiling
Lu, Meiping
Wu, Junsong
Xie, Qiangmin
Ke, Yuehai
Long, Fanxin
Tang, Lanfang
Wu, Ximei
author_sort Xu, Chengyun
collection PubMed
description Sonic hedgehog (SHH) is abundantly expressed and critical for morphogenesis in embryonic lungs, however, SHH expression drops to a much lower level in mice from E17.5 and in humans from the 21st gestational week. We find that SHH expression is robustly up-regulated in the airway epithelia of children with asthma or mouse models with allergic airway disease. Specifically, airway-specific SMO loss of function significantly suppresses allergen-induced goblet cell phenotypes, whereas an airway-specific SMO gain of function markedly enhances the goblet cell phenotypes in mouse models with allergic airway disease. Notably, intratracheal administration with SHH- neutralizing antibody or cyclopamine robustly attenuates goblet cell phenotypes in mouse models with allergic airway disease. Finally, we identify that Muc5AC gene encoding MUC5AC mucin serves as a direct target of GLI transcriptional factors in response to SHH, whereas the SAM pointed domain-containing ETS transcription factor and Forkhead box A2, critical transcriptional factors for goblet cell phenotypes, both function as the effectors of GLIs in response to SHH stimulation. Together, the up-regulation of SHH expression in allergic bronchial epithelia contributes to goblet cell metaplasia; thus, blockage of SHH signaling is a rational approach in a therapeutic intervention of epithelial remodeling in chronic airway diseases.
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spelling pubmed-61603302018-12-04 High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia Xu, Chengyun Zou, Chaochun Hussain, Musaddique Shi, Wei Shao, Yanan Jiang, Ziyan Wu, Xiling Lu, Meiping Wu, Junsong Xie, Qiangmin Ke, Yuehai Long, Fanxin Tang, Lanfang Wu, Ximei Mucosal Immunol Article Sonic hedgehog (SHH) is abundantly expressed and critical for morphogenesis in embryonic lungs, however, SHH expression drops to a much lower level in mice from E17.5 and in humans from the 21st gestational week. We find that SHH expression is robustly up-regulated in the airway epithelia of children with asthma or mouse models with allergic airway disease. Specifically, airway-specific SMO loss of function significantly suppresses allergen-induced goblet cell phenotypes, whereas an airway-specific SMO gain of function markedly enhances the goblet cell phenotypes in mouse models with allergic airway disease. Notably, intratracheal administration with SHH- neutralizing antibody or cyclopamine robustly attenuates goblet cell phenotypes in mouse models with allergic airway disease. Finally, we identify that Muc5AC gene encoding MUC5AC mucin serves as a direct target of GLI transcriptional factors in response to SHH, whereas the SAM pointed domain-containing ETS transcription factor and Forkhead box A2, critical transcriptional factors for goblet cell phenotypes, both function as the effectors of GLIs in response to SHH stimulation. Together, the up-regulation of SHH expression in allergic bronchial epithelia contributes to goblet cell metaplasia; thus, blockage of SHH signaling is a rational approach in a therapeutic intervention of epithelial remodeling in chronic airway diseases. 2018-06-04 2018-09 /pmc/articles/PMC6160330/ /pubmed/29867080 http://dx.doi.org/10.1038/s41385-018-0033-4 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Xu, Chengyun
Zou, Chaochun
Hussain, Musaddique
Shi, Wei
Shao, Yanan
Jiang, Ziyan
Wu, Xiling
Lu, Meiping
Wu, Junsong
Xie, Qiangmin
Ke, Yuehai
Long, Fanxin
Tang, Lanfang
Wu, Ximei
High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title_full High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title_fullStr High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title_full_unstemmed High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title_short High expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
title_sort high expression of sonic hedgehog in allergic airway epithelia contributes to goblet cell metaplasia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6160330/
https://www.ncbi.nlm.nih.gov/pubmed/29867080
http://dx.doi.org/10.1038/s41385-018-0033-4
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