Pharmacology and pathophysiology of mutated KCNJ5 found in adrenal aldosterone-producing adenomas

P Tauber1, D Penton, J Stindl

  • 1Medical Cell Biology (P.T., J.S., E.H., I.T., C.S., S.B., R.W.), University of Regensburg, 93053 Regensburg, Germany; Laboratoire de PhysioMédecine Moléculaire (D.P., J.B.), Centre National de la Recherche Scientifique, and Université de Nice Sophia Antipolis, FRE3472-Laboratoire de PhysioMédecine Moléculaire, 06108 Nice Cedex, France; Laboratories of Excellence, Ion Channel Science and Therapeutics (D.P., J.B.), France; and Medizinische Klinik und Poliklinik IV (F.B., M.R.), Ludwig-Maximilians-Universität, 80336 Munich, Germany.

Endocrinology
|February 11, 2014
PubMed

Insights

Mutations in the KCNJ5 gene, common in aldosterone-producing adenomas, disrupt ion balance, increasing sodium and calcium levels. This suggests potential new treatments targeting ion channels for these tumors.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Ion Channel Physiology

Background:

  • Somatic mutations in the potassium channel KCNJ5 gene are identified in 40% of aldosterone-producing adenomas (APAs).
  • These KCNJ5 mutations are linked to abnormal sodium permeability and elevated intracellular calcium, potentially through membrane depolarization and voltage-gated calcium channel activation.

Purpose of the Study:

  • To investigate the impact of mutated KCNJ5 channels on intracellular sodium (Na+) and calcium (Ca2+) homeostasis.
  • To explore the pharmacological differences between wild-type and mutated KCNJ5 channels.

Main Methods:

  • Utilized human adrenocortical NCI-H295R cells expressing mutated KCNJ5.
  • Measured intracellular Na+ and Ca2+ levels.
  • Assessed the effects of pharmacological agents, including verapamil and amiloride, on ion transport.

Main Results:

  • Expression of mutated KCNJ5 resulted in a twofold increase in intracellular Na+ and a significant rise in intracellular Ca2+.
  • The elevated Ca2+ was attributed to voltage-gated Ca2+ channel activation and impaired Na+/Ca2+ exchanger function.
  • Mutated KCNJ5 showed altered sensitivity to blockers, being less sensitive to Ba2+ and tertiapin-Q but inhibited by verapamil and amiloride.

Conclusions:

  • Mutated KCNJ5 channels significantly disrupt ion homeostasis in adrenocortical cells.
  • The distinct pharmacological profile of mutated KCNJ5 suggests potential therapeutic targets.
  • Drugs like verapamil and amiloride may influence aldosterone levels in APA patients with KCNJ5 mutations, indicating new diagnostic and therapeutic possibilities.

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