WNK Inhibition Increases Surface Liquid pH and Host Defense in Cystic Fibrosis Airway Epithelia

AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY(2022)

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摘要
In cystic fibrosis (CF), reduced HCO3- secretion acidifies the airway surface liquid (ASL), and the acidic pH disrupts host defenses. Thus, understanding the control of ASL pH (pH(ASL)) in CF may help identify novel targets and facilitate therapeutic development. In diverse epithelia, theWNK (with-no-lysine [K]) kinases coordinate HCO3- and Cl2 transport, but their functions in airway epithelia are poorly understood. Here, we tested the hypothesis that WNK kinases regulate CF pH(ASL). In primary cultures of differentiated human airway epithelia, inhibiting WNK kinases acutely increased both CF and non-CF pH(ASL). This response was HCO3- dependent and involved downstream SPAK/OSR1 (Ste20/SPS1-related prolinealanine-rich protein kinase/oxidative stress responsive 1 kinase). Importantly, WNK inhibition enhanced key host defenses otherwise impaired in CF. Human airway epithelia expressed two WNK isoforms in secretory cells and ionocytes, and knockdown of either WNK1 or WNK2 increased CF pH(ASL). WNK inhibition decreased Cl- secretion and the response to bumetanide, an NKCC1 (sodiumpotassium-chloride cotransporter 1) inhibitor. Surprisingly, bumetanide alone or basolateral Cl- substitution also alkalinized CF pH(ASL). These data suggest that WNK kinases influence the balance between transepithelial Cl- versus HCO3- secretion. Moreover, reducing basolateral Cl- entry may increase HCO3- secretion and raise pH(ASL), thereby improving CF host defenses.
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关键词
cystic fibrosis, WNK kinases, airway surface liquid, anion transport, pH
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