A possible new target in lung-cancer cells: The orphan receptor, bombesin receptor subtype-3

Paola Moreno1, Samuel A Mantey1, Suk H Lee1

  • 1Department of Health and Human Services, Digestive Diseases Branch, NIDDK, United States.

Peptides
|February 8, 2018
PubMed

Insights

The bombesin receptor subtype 3 (BRS-3) is frequently found in lung cancer cells and is functional, impacting cell signaling and growth. This suggests BRS-3 could be a new target for lung cancer treatments.

Area of Science:

  • Oncology
  • Molecular Biology
  • Gastroenterology

Background:

  • Human bombesin receptors, Gastrin-Releasing Peptide Receptor (GRPR) and Bombesin Receptor Subtype 2 (NMBR), are overexpressed in lung cancers.
  • These receptors function as growth factor receptors, influencing tumor angiogenesis and drug resistance.
  • The bombesin receptor subtype 3 (BRS-3), though homologous, has received less attention despite its presence in lung cancer cells.

Purpose of the Study:

  • To investigate the expression frequency and function of the human BRS-3 receptor in lung cancer.
  • To compare BRS-3 expression with GRPR and NMBR in various lung cancer cell lines.
  • To determine the effects of BRS-3 activation on cell signaling pathways and growth.

Main Methods:

  • Analysis of BRS-3, GRPR, and NMBR expression in 13 human lung cancer cell lines.
  • Functional assays to assess BRS-3 activation effects on phospholipase-C, cytosolic calcium, ERK/MAPK signaling, and cell growth.
  • Investigation of Epidermal Growth Factor Receptor (EGFR) transactivation upon BRS-3 stimulation.

Main Results:

  • BRS-3 was expressed in 92% of the examined lung cancer cell lines.
  • BRS-3 activation stimulated phospholipase-C, induced phosphoinositide breakdown, altered cytosolic calcium levels, and activated ERK/MAPK signaling.
  • BRS-3 activation promoted cell growth, partly through EGFR transactivation in some cell lines.

Conclusions:

  • Human BRS-3 is frequently overexpressed and functional in lung cancer cells, similar to GRPR and NMBR.
  • BRS-3 activation influences key cell signaling pathways and promotes cell growth.
  • BRS-3 represents a potential therapeutic and diagnostic target for lung cancer, warranting further investigation.

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