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SLC26A9-mediated chloride secretion prevents mucus obstruction in airway inflammation
Pinelopi Anagnostopoulou, … , Ursula Seidler, Marcus A. Mall
Pinelopi Anagnostopoulou, … , Ursula Seidler, Marcus A. Mall
Published September 4, 2012
Citation Information: J Clin Invest. 2012;122(10):3629-3634. https://doi.org/10.1172/JCI60429.
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Brief Report Pulmonology

SLC26A9-mediated chloride secretion prevents mucus obstruction in airway inflammation

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Abstract

Asthma is a chronic condition with unknown pathogenesis, and recent evidence suggests that enhanced airway epithelial chloride (Cl–) secretion plays a role in the disease. However, the molecular mechanism underlying Cl– secretion and its relevance in asthma pathophysiology remain unknown. To determine the role of the solute carrier family 26, member 9 (SLC26A9) Cl– channel in asthma, we induced Th2-mediated inflammation via IL-13 treatment in wild-type and Slc26a9-deficient mice and compared the effects on airway ion transport, morphology, and mucus content. We found that IL-13 treatment increased Cl– secretion in the airways of wild-type but not Slc26a9-deficient mice. While IL-13–induced mucus overproduction was similar in both strains, treated Slc26a9-deficient mice exhibited airway mucus obstruction, which did not occur in wild-type controls. In a study involving healthy children and asthmatics, a polymorphism in the 3′ UTR of SLC26A9 that reduced protein expression in vitro was associated with asthma. Our data demonstrate that the SLC26A9 Cl– channel is activated in airway inflammation and suggest that SLC26A9-mediated Cl– secretion is essential for preventing airway obstruction in allergic airway disease. These results indicate that SLC26A9 may serve as a therapeutic target for airway diseases associated with mucus plugging.

Authors

Pinelopi Anagnostopoulou, Brigitte Riederer, Julia Duerr, Sven Michel, Aristea Binia, Raman Agrawal, Xuemei Liu, Katrin Kalitzki, Fang Xiao, Mingmin Chen, Jolanthe Schatterny, Dorothee Hartmann, Thomas Thum, Michael Kabesch, Manoocher Soleimani, Ursula Seidler, Marcus A. Mall

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Figure 4

A SNP in the 3′ UTR of SLC26A9 reduces reporter gene activity in luciferase reporter assays.

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A SNP in the 3′ UTR of SLC26A9 reduces reporter gene activity in lucifer...
(A) Alignment of the partial wild-type 3′ UTR sequence of SLC26A9 (nucleotides 4511–4529) with the SNP rs2282430 (indicated by arrowhead) and hsa-miR-632. (B) Summary of relative luciferase activity of reporter constructs containing the wild-type versus polymorphic (SNP) 3′ UTR of SLC26A9 transfected into A549 cells. (C) Effects of co-transfection with precursor hsa-miR-632 or a pre-miR negative control (miR-Ctrl) on luciferase activity of wild-type versus SNP SLC26A9 3′ UTR constructs in HEK293 cells. n = 10–11 experiments per group. *P < 0.05.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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