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Aryl hydrocarbon receptor (AHR) is a potential tumour suppressor in pituitary adenomas
R Formosa1, J Borg2, J Vassallo3,4
1Department of MedicineFaculty of Medicine and Surgery, University of Malta, Msida, Malta.
Abstract:
Pituitary adenomas (PA) represent the largest group of intracranial neoplasms and yet the molecular mechanisms driving this disease remain largely unknown. The aim of this study was to use a high-throughput screening method to identify molecular pathways that may be playing a significant and consistent role in PA. RNA profiling using microarrays on eight local PAs identified the aryl hydrocarbon receptor (AHR) signalling pathway as a key canonical pathway downregulated in all PA types. This was confirmed by real-time PCR in 31 tumours. The AHR has been shown to regulate cell cycle progression in various cell types; however, its role in pituitary tissue has never been investigated. In order to validate the role of AHR in PA behaviour, further functional studies were undertaken. Over-expression of AHR in GH3 cells revealed a tumour suppressor potential independent of exogenous ligand activation by benzo α-pyrene (BαP). Cell cycle analysis and quantitative PCR of cell cycle regulator genes revealed that both unstimulated and BαP-stimulated AHR reduced E2F-driven transcription and altered expression of cell cycle regulator genes, thus increasing the percentage of cells in G0/G1 phase and slowing the proliferation rate of GH3 cells. Co-immunoprecipitation confirmed the interaction between AHR and retinoblastoma (Rb1) protein supporting this as a functional mechanism for the observed reduction. Endogenous Ahr reduction using silencing RNA confirmed the tumour suppressive function of the Ahr. These data support a mechanistic pathway for the putative tumour suppressive role of AHR specifically in PA, possibly through its role as a cell cycle co-regulator, even in the absence of exogenous ligands.
Insights
The aryl hydrocarbon receptor (AHR) pathway is downregulated in pituitary adenomas (PA). AHR acts as a tumor suppressor by slowing cell proliferation, offering new therapeutic targets for PA.
Area of Science:
- Endocrinology and Molecular Oncology
Background:
- Pituitary adenomas (PA) are common intracranial neoplasms with poorly understood molecular drivers.
- The aryl hydrocarbon receptor (AHR) pathway's role in pituitary tissue is unexplored.
Purpose of the Study:
- To identify molecular pathways involved in PA pathogenesis using high-throughput screening.
- To investigate the functional role of the AHR pathway in pituitary adenoma development.
Main Methods:
- RNA profiling (microarrays and real-time PCR) on PA samples.
- Functional studies involving AHR over-expression and silencing in pituitary cells (GH3).
- Cell cycle analysis, quantitative PCR, and co-immunoprecipitation.
Main Results:
- Aryl hydrocarbon receptor (AHR) signaling pathway identified as downregulated in all PA types.
- AHR overexpression suppressed GH3 cell proliferation by altering cell cycle regulators and increasing G0/G1 phase.
- AHR interacts with retinoblastoma (Rb1) protein, suggesting a cell cycle co-regulatory mechanism.
- AHR's tumor suppressor function confirmed via RNA silencing.
Conclusions:
- Aryl hydrocarbon receptor (AHR) exhibits tumor suppressor activity in pituitary adenomas.
- AHR regulates pituitary tumor cell proliferation, potentially via interaction with Rb1 and cell cycle control.
- AHR represents a potential therapeutic target for pituitary adenomas, independent of ligand activation.
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