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Plasmalemmal H+ extruders in mammalian alveolar macrophages

Thomas A Heming1, Akhil Bidani

  • 1Pulmonary and Critical Care Medicine, Department of Internal Medicine, University of Texas Health Science Center, Houston, TX 77225-0708, USA. Thomas.Heming@uth.tmc.edu

Insights

Plasmalemmal V-type H+-pumps (V-ATPase) are crucial for regulating intracellular pH in alveolar macrophages. These pumps, along with Na+/H+ exchange, maintain pH balance in various mammals.

Area of Science:

  • Cell Biology
  • Physiology
  • Biochemistry

Background:

  • The role of V-type H+-pumps (V-ATPase) in the plasma membrane of mammalian macrophages (mφ) and their functional significance remain poorly understood.
  • Intracellular pH (pH(i)) regulation is vital for macrophage function.

Purpose of the Study:

  • To investigate the role of V-ATPase in regulating intracellular pH (pH(i)) in resident alveolar macrophages from sheep, pigs, dogs, and rabbits.
  • To compare the contribution of V-ATPase and Na+/H+ exchange to pH(i) homeostasis.

Main Methods:

  • Utilized the fluorescent probe 2',7'-biscarboxyethyl-5,6-carboxyfluorescein to monitor baseline pH(i) and pH(i) recovery rates.
  • Employed selective V-ATPase inhibitors (bafilomycin A1, concanamycin A) and a Na+ transport inhibitor (amiloride) to assess transporter activity.
  • Induced intracellular acid-loads using an NH4Cl prepulse to study pH(i) recovery mechanisms.

Main Results:

  • Baseline pH(i) in alveolar macrophages was consistently around 7.1-7.2 across species.
  • V-ATPase activity was the primary mechanism for pH(i) recovery from acid-loads at pH(i) >6.8-6.9 in sheep, pig, and dog macrophages.
  • Na+/H+ exchange contributed to pH(i) recovery only at more acidic pH(i) values (<6.8) and exhibited higher pH sensitivity than V-ATPase.
  • In rabbits, V-ATPase and non-specific H+-pump inhibitors showed similar effects on baseline pH(i), suggesting a significant V-ATPase role.

Conclusions:

  • Plasmalemmal V-ATPase plays a major role in the intracellular pH regulation of alveolar macrophages in sheep, pigs, dogs, and rabbits.
  • The relative contributions of V-ATPase and Na+/H+ exchange to pH(i) homeostasis vary with the degree of intracellular acidification.
  • Understanding these mechanisms is crucial for comprehending macrophage physiology and function.

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