The gsp oncogene disrupts Ras/ERK-dependent prolactin gene regulation in gsp inducible somatotroph cell line

M Pertuit1, D Romano, C Zeiller

  • 1CRN2M, Unité Mixte de Recherche 6231, Department of Neuroendocrinology-Neuroimmunology, Institut Fédératif Jean-Roche, Faculté de Médecine Secteur Nord, Université de la Méditerranée CS80011, Boulevard Pierre Dramard, 13344 Marseille cedex 15, France.

Endocrinology
|February 3, 2011
PubMed

Insights

The gsp oncogene activates the ERK1/2 pathway in pituitary cells, driving prolactin gene expression. This study reveals Ras

Area of Science:

  • Molecular endocrinology
  • Cellular signaling pathways
  • Cancer biology

Background:

  • The MAPK ERK1/2 cascade is crucial for cellular functions and pituitary regulation.
  • ERK1/2 signaling interacts with the cAMP pathway, influencing somatolactotroph hormone secretion.
  • GH-secreting adenomas often exhibit cAMP pathway alterations, including gsp oncogene activation.

Purpose of the Study:

  • To elucidate the role of the ERK1/2 cascade in GH-secreting adenoma tumorigenesis.
  • To investigate how gsp oncogene activation leads to sustained ERK1/2 activation and prolactin promoter activity.

Main Methods:

  • Utilized a conditional gsp-oncogene-expressing GH4C1 cell line.
  • Analyzed the involvement of protein kinase A, Ras, and Rap1 in ERK1/2 activation.
  • Assessed the impact on human prolactin promoter activity.

Main Results:

  • Gsp oncogene expression induced sustained ERK1/2 activation, dependent on protein kinase A, Ras, and Rap1.
  • These signaling components contributed to chronic activation of the human prolactin promoter.
  • Ras switched from a repressor to an activator of the prolactin promoter in the presence of the gsp oncogene.

Conclusions:

  • Sustained ERK1/2 activation, driven by the gsp oncogene, plays a key role in GH-secreting adenoma development.
  • Ras acts as a critical mediator, converting a repressor to an activator of prolactin gene control in this context.
  • Understanding these pathways offers insights into pituitary tumor pathogenesis and potential therapeutic targets.

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