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Tgf-beta downregulation of distinct chloride channels in cystic fibrosis-affected epithelia.


ABSTRACT:

Rationale

The cystic fibrosis transmembrane conductance regulator (CFTR) and Calcium-activated Chloride Conductance (CaCC) each play critical roles in maintaining normal hydration of epithelial surfaces including the airways and colon. TGF-beta is a genetic modifier of cystic fibrosis (CF), but how it influences the CF phenotype is not understood.

Objectives

We tested the hypothesis that TGF-beta potently downregulates chloride-channel function and expression in two CF-affected epithelia (T84 colonocytes and primary human airway epithelia) compared with proteins known to be regulated by TGF-beta.

Measurements and main results

TGF-beta reduced CaCC and CFTR-dependent chloride currents in both epithelia accompanied by reduced levels of TMEM16A and CFTR protein and transcripts. TGF-beta treatment disrupted normal regulation of airway-surface liquid volume in polarized primary human airway epithelia, and reversed F508del CFTR correction produced by VX-809. TGF-beta effects on the expression and activity of TMEM16A, wtCFTR and corrected F508del CFTR were seen at 10-fold lower concentrations relative to TGF-beta effects on e-cadherin (epithelial marker) and vimentin (mesenchymal marker) expression. TGF-beta downregulation of TMEM16A and CFTR expression were partially reversed by Smad3 and p38 MAPK inhibition, respectively.

Conclusions

TGF-beta is sufficient to downregulate two critical chloride transporters in two CF-affected tissues that precedes expression changes of two distinct TGF-beta regulated proteins. Our results provide a plausible mechanism for CF-disease modification by TGF-beta through effects on CaCC.

SUBMITTER: Sun H 

PROVIDER: S-EPMC4182049 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Publications

Tgf-beta downregulation of distinct chloride channels in cystic fibrosis-affected epithelia.

Sun Hongtao H   Harris William T WT   Kortyka Stephanie S   Kotha Kavitha K   Ostmann Alicia J AJ   Rezayat Amir A   Sridharan Anusha A   Sanders Yan Y   Naren Anjaparavanda P AP   Clancy John P JP  

PloS one 20140930 9


<h4>Rationale</h4>The cystic fibrosis transmembrane conductance regulator (CFTR) and Calcium-activated Chloride Conductance (CaCC) each play critical roles in maintaining normal hydration of epithelial surfaces including the airways and colon. TGF-beta is a genetic modifier of cystic fibrosis (CF), but how it influences the CF phenotype is not understood.<h4>Objectives</h4>We tested the hypothesis that TGF-beta potently downregulates chloride-channel function and expression in two CF-affected ep  ...[more]

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