Cargando…

CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia

Endoglin (ENG) regulates signaling by transforming growth factor‐β (TGF‐β), a genetic modifier of cystic fibrosis (CF) lung disease severity. We hypothesized that ENG mediates TGF‐β pathobiology in CF airway epithelia. Comparing CF and non‐CF human lungs, we measured ENG by qPCR, immunoblotting and...

Descripción completa

Detalles Bibliográficos
Autores principales: Nicola, Teodora, Kabir, Farruk L., Coric, Tatjana, Wall, Stephanie B., Zhang, Weifeng, James, Masheika, MacEwen, Mark, Ren, Changchun, Halloran, Brian, Ambalavanan, Namasivayam, Harris, William T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6389738/
https://www.ncbi.nlm.nih.gov/pubmed/30806029
http://dx.doi.org/10.14814/phy2.13977
_version_ 1783397992477229056
author Nicola, Teodora
Kabir, Farruk L.
Coric, Tatjana
Wall, Stephanie B.
Zhang, Weifeng
James, Masheika
MacEwen, Mark
Ren, Changchun
Halloran, Brian
Ambalavanan, Namasivayam
Harris, William T.
author_facet Nicola, Teodora
Kabir, Farruk L.
Coric, Tatjana
Wall, Stephanie B.
Zhang, Weifeng
James, Masheika
MacEwen, Mark
Ren, Changchun
Halloran, Brian
Ambalavanan, Namasivayam
Harris, William T.
author_sort Nicola, Teodora
collection PubMed
description Endoglin (ENG) regulates signaling by transforming growth factor‐β (TGF‐β), a genetic modifier of cystic fibrosis (CF) lung disease severity. We hypothesized that ENG mediates TGF‐β pathobiology in CF airway epithelia. Comparing CF and non‐CF human lungs, we measured ENG by qPCR, immunoblotting and ELISA. In human bronchial epithelial cell lines (16HBE), we used CFTR siRNA knockdown and functional inhibition (CFTR(INH)‐172) to connect loss of CFTR to ENG synthesis. Plasmid overexpression of ENG assessed the direct effect of ENG on TGF‐β transcription and signal amplification in 16HBE cells. We found ENG protein to be increased more than fivefold both in human CF bronchoalveolar fluid (BALF) and human CF lung homogenates. ENG transcripts were increased threefold in CF, with a twofold increase in TGF‐β signaling. CFTR knockdown in 16HBE cells tripled ENG transcription and doubled protein levels with corresponding increases in TGF‐β signaling. Plasmid overexpression of ENG alone nearly doubled TGF‐β1 mRNA and increased TGF‐β signaling in 16HBE cells. These experiments identify that loss of CFTR function increases ENG expression in CF epithelia and amplifies TGF‐β signaling. Targeting ENG may offer a novel therapeutic opportunity to address TGF‐β associated pathobiology in CF.
format Online
Article
Text
id pubmed-6389738
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-63897382019-03-07 CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia Nicola, Teodora Kabir, Farruk L. Coric, Tatjana Wall, Stephanie B. Zhang, Weifeng James, Masheika MacEwen, Mark Ren, Changchun Halloran, Brian Ambalavanan, Namasivayam Harris, William T. Physiol Rep Original Research Endoglin (ENG) regulates signaling by transforming growth factor‐β (TGF‐β), a genetic modifier of cystic fibrosis (CF) lung disease severity. We hypothesized that ENG mediates TGF‐β pathobiology in CF airway epithelia. Comparing CF and non‐CF human lungs, we measured ENG by qPCR, immunoblotting and ELISA. In human bronchial epithelial cell lines (16HBE), we used CFTR siRNA knockdown and functional inhibition (CFTR(INH)‐172) to connect loss of CFTR to ENG synthesis. Plasmid overexpression of ENG assessed the direct effect of ENG on TGF‐β transcription and signal amplification in 16HBE cells. We found ENG protein to be increased more than fivefold both in human CF bronchoalveolar fluid (BALF) and human CF lung homogenates. ENG transcripts were increased threefold in CF, with a twofold increase in TGF‐β signaling. CFTR knockdown in 16HBE cells tripled ENG transcription and doubled protein levels with corresponding increases in TGF‐β signaling. Plasmid overexpression of ENG alone nearly doubled TGF‐β1 mRNA and increased TGF‐β signaling in 16HBE cells. These experiments identify that loss of CFTR function increases ENG expression in CF epithelia and amplifies TGF‐β signaling. Targeting ENG may offer a novel therapeutic opportunity to address TGF‐β associated pathobiology in CF. John Wiley and Sons Inc. 2019-02-25 /pmc/articles/PMC6389738/ /pubmed/30806029 http://dx.doi.org/10.14814/phy2.13977 Text en © 2019 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Nicola, Teodora
Kabir, Farruk L.
Coric, Tatjana
Wall, Stephanie B.
Zhang, Weifeng
James, Masheika
MacEwen, Mark
Ren, Changchun
Halloran, Brian
Ambalavanan, Namasivayam
Harris, William T.
CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title_full CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title_fullStr CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title_full_unstemmed CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title_short CFTR dysfunction increases endoglin and TGF‐β signaling in airway epithelia
title_sort cftr dysfunction increases endoglin and tgf‐β signaling in airway epithelia
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6389738/
https://www.ncbi.nlm.nih.gov/pubmed/30806029
http://dx.doi.org/10.14814/phy2.13977
work_keys_str_mv AT nicolateodora cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT kabirfarrukl cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT corictatjana cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT wallstephanieb cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT zhangweifeng cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT jamesmasheika cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT macewenmark cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT renchangchun cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT halloranbrian cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT ambalavanannamasivayam cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia
AT harriswilliamt cftrdysfunctionincreasesendoglinandtgfbsignalinginairwayepithelia