Inflammation-induced upregulation of p2x 4 expression augments mucin secretion in airway epithelia

Veronika E. Winkelmann, Kristin E. Thompson, Kathrin Neuland, Ana M. Jaramillo, Giorgio Fois, Hanna Schmidt, Oliver H. Wittekindt, Wei Han, Michael J. Tuvim, Burton F. Dickey, Paul Dietl, Manfred Frick

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Mucus clearance provides an essential innate defense mechanism to keep the airways and lungs free of particles and pathogens. Baseline and stimulated mucin secretion from secretory airway epithelial cells need to be tightly regulated to prevent mucus hypersecretion and mucus plugging of the airways. It is well established that extracellular ATP is a potent stimulus for regulated mucus secretion. Previous studies revealed that ATP acts via metabotropic P2Y 2 purinoreceptors on goblet cells. Extracellular ATP, however, is also a potent agonist for ionotropic P2X purinoreceptors. Expression of several P2X isoforms has been reported in airways, but cell type-specific expression and the function thereof remained elusive. With this study, we now provide evidence that P2X 4 is the predominant P2X isoform expressed in secretory airway epithelial cells. After IL-13 treatment of either human primary tracheal epithelial cells or mice, P2X 4 expression is upregulated in vitro and in vivo under conditions of chronic inflammation, mucous metaplasia, and hyperplasia. Upregulation of P2X 4 is strongest in MUC5AC-positive goblet cells. Moreover, activation of P2X 4 by extracellular ATP augments intracellular Ca 2+ signals and mucin secretion, whereas Ca 2+ signals and mucin secretion are dampened by inhibition of P2X 4 receptors. These data provide new insights into the purinergic regulation of mucin secretion and add to the emerging picture that P2X receptors modulate exocytosis of large secretory organelles and secretion of macromolecular vesicle cargo.

Original languageEnglish (US)
Pages (from-to)L58-L70
JournalAmerican Journal of Physiology - Lung Cellular and Molecular Physiology
Volume316
Issue number1
DOIs
StatePublished - Jan 2019

Keywords

  • Goblet cells
  • IL-13
  • MUC5AC
  • Mucin
  • Mucus secretion
  • P2X

ASJC Scopus subject areas

  • Physiology
  • Pulmonary and Respiratory Medicine
  • Physiology (medical)
  • Cell Biology

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