Related Experiment Video
Updated: Jun 4, 2026

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
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.
Abstract:
The MAPK ERK1/2 cascade regulates all the critical cellular functions, and in many pathological situations, these regulatory processes are perturbed. It has been clearly established that this cascade is an integrative point in the control of the pituitary functions exerted by various extracellular signals. In particular, ERK1/2 cross talk with the cAMP pathway is determinant in the control of somatolactotroph hormonal secretion exerted via neuropeptide receptors. GH-secreting adenomas are characterized by frequent cAMP pathway alterations, such as constitutive activation of the α-subunit of the heterotrimeric Gs protein (the gsp oncogene), overexpression of Gsα, and changes in the protein kinase A regulatory subunits. However, it has not yet been established exactly how these alterations result in GH-secreting adenomas or how the ERK1/2 cascade contributes to the process of GH-secreting adenoma tumorigenesis. In this study on the conditional gsp-oncogene-expressing GH4C1 cell line, expression of the gsp oncogene, which was observed in up to 40% of GH-secreting adenomas, was found to induce sustained ERK1/2 activation, which required activation of the protein kinase A and the GTPases Ras and Rap1. All these signaling components contribute to the chronic activation of the human prolactin promoter. The data obtained here show that Ras plays a crucial role in these processes: in a physiopathological context, i.e. in the presence of the gsp oncogene, it switched from being a repressor of the cAMP/ protein kinase A ERK-sensitive prolactin gene control exerted by neuropeptides to an activator of the prolactin promoter.
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.
Related Concept Videos
The Ras Gene
Ras is a superfamily...
Small GTPases - Ras and Rho
Three regulatory proteins control their activity:
Activation and Inactivation of G Proteins
GPCRs Regulate Adenylyl Cylase Activity
Two...
GPCR Desensitization
Abnormal Proliferation

