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Inhibition of the sodium-dependent HCO3- transporter SLC4A4, produces a cystic fibrosis-like airway disease phenotype

Vinciane Saint-Criq, Anita Guequén, Amber Philp, Sandra Villanueva, Tábata Apablaza, Ignacio Fernández-Moncada, Agustín Mansilla, View ORCID ProfileLivia Delpiano, Iván Ruminot, Cristian Carrasco, Michael A. Gray, View ORCID ProfileCarlos A. Flores
doi: https://doi.org/10.1101/2021.12.14.472535
Vinciane Saint-Criq
1Biosciences Institute, The Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom
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Anita Guequén
2Centro de Estudios Científicos (CECs), Valdivia, Chile
3Universidad Austral de Chile, Valdivia, Chile
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Amber Philp
2Centro de Estudios Científicos (CECs), Valdivia, Chile
3Universidad Austral de Chile, Valdivia, Chile
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Sandra Villanueva
2Centro de Estudios Científicos (CECs), Valdivia, Chile
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Tábata Apablaza
2Centro de Estudios Científicos (CECs), Valdivia, Chile
3Universidad Austral de Chile, Valdivia, Chile
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Ignacio Fernández-Moncada
2Centro de Estudios Científicos (CECs), Valdivia, Chile
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Agustín Mansilla
2Centro de Estudios Científicos (CECs), Valdivia, Chile
3Universidad Austral de Chile, Valdivia, Chile
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Livia Delpiano
1Biosciences Institute, The Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom
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  • ORCID record for Livia Delpiano
Iván Ruminot
2Centro de Estudios Científicos (CECs), Valdivia, Chile
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Cristian Carrasco
4Subdepartamento de Anatomía Patológica, Hospital Base de Valdivia, Valdivia 5090000, Chile
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Michael A. Gray
1Biosciences Institute, The Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom
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Carlos A. Flores
2Centro de Estudios Científicos (CECs), Valdivia, Chile
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  • ORCID record for Carlos A. Flores
  • For correspondence: [email protected]
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ABSTRACT

Bicarbonate secretion is a fundamental process involved in maintaining acid-base homeostasis. Disruption of bicarbonate entry into airway lumen, as has been observed in cystic fibrosis, produces several defects in lung function due to thick mucus accumulation. Bicarbonate is critical for correct mucin deployment and there is increasing interest in understanding its role in airway physiology, particularly in the initiation of lung disease in children affected by cystic fibrosis, in the absence of detectable bacterial infection. The current model of anion secretion in mammalian airways consists of CFTR and TMEM16A as apical anion exit channels, with limited capacity for bicarbonate transport compared to chloride. However, both channels can couple to SLC26A4 anion exchanger to maximise bicarbonate secretion. Nevertheless, current models lack any details about the identity of the basolateral protein(s) responsible for bicarbonate uptake into airway epithelial cells. We report herein that the electrogenic, sodium-dependent, bicarbonate cotransporter, SLC4A4, is expressed in the basolateral membrane of human and mouse airways, and that it’s pharmacological inhibition or genetic silencing reduces bicarbonate secretion. In fully differentiated primary human airway cells, SLC4A4 inhibition induced an acidification of the airways surface liquid and markedly reduced the capacity of cells to recover from an acid load. Studies in the Slc4a4-null mice revealed a previously unreported lung phenotype, characterized by mucus accumulation and reduced mucociliary clearance. Collectively, our results demonstrate that the reduction of SLC4A4 function induced a CF-like phenotype, even when chloride secretion remained intact, highlighting the important role SLC4A4 plays in bicarbonate secretion and mammalian airway function.

Competing Interest Statement

The authors have declared no competing interest.

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Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted December 16, 2021.
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Inhibition of the sodium-dependent HCO3- transporter SLC4A4, produces a cystic fibrosis-like airway disease phenotype
Vinciane Saint-Criq, Anita Guequén, Amber Philp, Sandra Villanueva, Tábata Apablaza, Ignacio Fernández-Moncada, Agustín Mansilla, Livia Delpiano, Iván Ruminot, Cristian Carrasco, Michael A. Gray, Carlos A. Flores
bioRxiv 2021.12.14.472535; doi: https://doi.org/10.1101/2021.12.14.472535
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Inhibition of the sodium-dependent HCO3- transporter SLC4A4, produces a cystic fibrosis-like airway disease phenotype
Vinciane Saint-Criq, Anita Guequén, Amber Philp, Sandra Villanueva, Tábata Apablaza, Ignacio Fernández-Moncada, Agustín Mansilla, Livia Delpiano, Iván Ruminot, Cristian Carrasco, Michael A. Gray, Carlos A. Flores
bioRxiv 2021.12.14.472535; doi: https://doi.org/10.1101/2021.12.14.472535

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