Histamine-induced inositol phosphate accumulation in HeLa cells: lithium sensitivity

D R Bristow1, J A Arias-Montaño, J M Young

  • 1Department of Pharmacology, University of Cambridge.

Insights

Lithium ions (Li+) enhance histamine-stimulated inositol monophosphate ([3H]-IP1) accumulation in HeLa cells, reaching a steady-state level. This indicates that Li+ partially inhibits IP1 metabolism, unlike in mammalian brain.

Area of Science:

  • Cellular and Molecular Pharmacology
  • Signal Transduction Pathways
  • Biochemistry

Background:

  • Histamine receptor activation triggers inositol phosphate metabolism.
  • Lithium ions are known to modulate inositol phosphate signaling.
  • Understanding these modulations is crucial for cellular signaling research.

Purpose of the Study:

  • To investigate the effect of lithium ions (Li+) on histamine-induced inositol phosphate accumulation in HeLa cells.
  • To characterize the time course and concentration-dependence of these effects.
  • To compare the sensitivity of inositol phosphate metabolism to Li+ in HeLa cells versus mammalian brain.

Main Methods:

  • HeLa cells were prelabelled with [3H]-inositol.
  • Cells were stimulated with histamine in the presence of varying Li+ concentrations.
  • Accumulation of [3H]-inositol monophosphates ([3H]-IP1), bisphosphates ([3H]-IP2), and trisphosphates ([3H]-IP3) was measured.
  • Effects of NaF and mepyramine on [3H]-IP1 levels were assessed.

Main Results:

  • 10 mM Li+ caused a time-dependent accumulation of [3H]-IP1 to a plateau, while [3H]-IP2 and [3H]-IP3 levels transiently increased and then decreased.
  • Histamine concentration-response curves in the presence of Li+ showed an EC50 of 1.6 ± 0.2 μM.
  • NaF further increased histamine-induced [3H]-IP1 accumulation, and mepyramine caused a decline, suggesting incomplete Li+-induced IP1 metabolism blockade.
  • Increasing Li+ concentration from 0 to 60 mM enhanced both basal and histamine-induced [3H]-IP1 levels, with a greater effect on the latter.

Conclusions:

  • Lithium ions partially inhibit inositol monophosphate metabolism in HeLa cells, leading to a steady-state accumulation.
  • The sensitivity of IP1 metabolism to Li+ in HeLa cells is lower compared to mammalian brain.
  • The plateau level of [3H]-IP1 in the presence of Li+ is proportional to the rate of its formation, providing insights into signaling dynamics.