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Published on: March 20, 2026
Molecular pathogenesis of human prolactinomas identified by gene expression profiling, RT-qPCR, and proteomic
Chheng-Orn Evans1, Carlos S Moreno, Xianquan Zhan
1Department of Neurosurgery and Laboratory of Molecular Neurosurgery and Biotechnology, Emory University School of Medicine, 1365 B Clifton Rd., NE, Suite. 6200, Atlanta, GA, 30322, USA.
Abstract:
The molecular pathogenesis of prolactinomas has resisted elucidation; with the exception of a RAS mutation in a single aggressive prolactinoma, no mutational changes have been identified. In prolactinomas, a further obstacle has been the paucity of surgical specimens suitable for molecular analysis since prolactionomas are infrequently removed due to the availability and effectiveness of medical therapy. In the absence of mutational events, gene expression changes have been sought and detected. Using high-throughput analysis from a large bank of human pituitary adenomas, we examined these tumors according to their molecular profiles rather than traditional immunohistochemistry. We examined six prolactinomas and eight normal pituitary glands using oligonucleotide GeneChip microarrays, reverse transcription-real time quantitative polymerase chain reaction using 10 prolactinomas, and proteomic analysis to examine protein expression in four prolactinomas. Microarray analyses identified 726 unique genes that were statistically significantly different between prolactinomas and normal glands, whereas proteomic analysis identified four differently up-regulated and 19 down-regulated proteins. Several components of the Notch pathway were altered in prolactinomas, and there was an increased expression of the Pit-1 transcription factor, and the survival factor BAG1 but decreased E-cadherin and N-cadherin expression. Taken together, expression profiling and proteomic analyses have identified molecular features unique to prolactinomas that may contribute to their pathogenesis. In the current era of molecular medicine, these findings greatly enhance our understanding and supercede immunohistochemical diagnosis.
Insights
Molecular profiling reveals distinct gene and protein expression changes in prolactinomas, offering new insights into pituitary tumor pathogenesis beyond traditional methods.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- The molecular basis of prolactinomas remains poorly understood, with limited identified mutations.
- Surgical specimens for analysis are scarce due to effective medical treatments.
Purpose of the Study:
- To investigate the molecular profiles of prolactinomas using high-throughput analysis.
- To identify novel molecular features contributing to prolactinoma pathogenesis.
Main Methods:
- Oligonucleotide GeneChip microarrays for gene expression analysis.
- Reverse transcription-quantitative polymerase chain reaction.
- Proteomic analysis for protein expression profiling.
Main Results:
- Identified 726 differentially expressed genes between prolactinomas and normal pituitary glands.
- Detected altered expression of Notch pathway components, Pit-1, BAG1, and cadherins.
- Found four up-regulated and 19 down-regulated proteins.
Conclusions:
- Expression profiling and proteomic analyses reveal unique molecular characteristics of prolactinomas.
- These findings advance understanding of prolactinoma pathogenesis in the era of molecular medicine.
- Molecular profiling offers a superior diagnostic approach compared to immunohistochemistry.