Purinergic P2Y6 receptors induce Ca2+ and CFTR dependent Cl- secretion in mouse trachea

Rainer Schreiber1, Karl Kunzelmann

  • 1Institut für Physiologie, Universität Regensburg, Germany. rainer.schreiber@vkl.uni-regensburg.de

Insights

Airway electrolyte transport is modulated by P2Y6 receptors. Luminal ADP and UDP activate these receptors, increasing chloride secretion and inhibiting sodium absorption via protein kinase A.

Area of Science:

  • Respiratory physiology
  • Cellular signaling
  • Ion transport

Background:

  • Airway epithelial cells regulate electrolyte balance via ion channels and transporters.
  • Purinergic signaling, involving ATP and its metabolites, plays a role in airway function.
  • Ecto-nucleotidases degrade nucleotides, influencing purinergic receptor activation.

Purpose of the Study:

  • To investigate the role of P2Y6 receptors in mediating electrolyte transport in mouse trachea.
  • To determine the signaling pathways involved in P2Y6 receptor-mediated responses.
  • To elucidate the effects of nucleotide metabolites (ADP, UDP) on airway ion transport.

Main Methods:

  • Immunohistochemistry to localize P2Y6 receptors in mouse trachea.
  • Ussing chamber experiments to measure short-circuit currents (ISC) and ion transport.
  • Pharmacological inhibition of P2Y6 receptors, ion channels, and signaling pathways (PKA).

Main Results:

  • Luminal ADP and UDP activated P2Y6 receptors, increasing ISC (short-circuit currents).
  • The persistent ISC increase was mediated by protein kinase A (PKA) and basolateral K+ channels.
  • P2Y6 receptor activation shifted electrolyte transport towards chloride secretion and inhibited sodium absorption.

Conclusions:

  • Luminal P2Y6 receptor activation by ADP and UDP promotes airway electrolyte secretion.
  • This process involves intracellular calcium and PKA activation, altering ion transport dynamics.
  • P2Y6 receptors represent a novel target for modulating airway fluid balance.

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