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Published on: October 9, 2016
Spliceosome component TCERG1 regulates the aggressiveness of somatotroph adenoma
Kyungwon Kim1, Hye Ju Shin1, Sang-Cheol Park2
1Endocrinology, Institute of Endocrine Research, Department of Internal Medicine, Yonsei University College of Medicine, 50 Yonsei-ro, Seodaemun-gu, Seoul, 120-752, Republic of Korea.
Purpose:
We aimed to identify differentially expressed spliceosome components in growth hormone (GH)-secreting pituitary tumors and investigate their roles in pathogenesis.
Methods:
We performed transcriptome analysis of 20 somatotroph adenomas and 6 normal pituitary tissues to select dysregulated spliceosome components. Clinical characteristics were analyzed based on gene expression in 64 patients with acromegaly. Proliferation, invasion, and hormonal activity of GH secreting pituitary adenoma cells were investigated.
Results:
TCERG1 expression was significantly higher in somatotroph adenomas than in normal pituitaries (log2 fold change 0.59, adjusted P = 0.0002*). Genotype-phenotype analysis revealed that patients with higher TCERG1 expression had lower surgical remission rates than those with lower expression (63.64% vs. 95.45%, P = 0.009*). TCERG1 expression was significantly higher in groups with cavernous sinus (CS) invasion or Ki67 index over 3 (all P>0.05*). TCERG1 overexpression led to a 29.60% increase in proliferation (P<0.001*) and a 249.47% increase in invasion after 48 h in GH3 cells (P = 0.026*). Conversely, TCERG1 silencing significantly decreased cell proliferation (25.76% at 72 h, P<0.001*) and invasion (96.87% at 48 h, P = 0.029*). E-cadherin was decreased, but vimentin was increased in both TCERG1 overexpressed GH3 cells and somatotroph adenomas. And TCERG1 silence reversed the expression of the genes (CDH2, SNAI1, ZEB2, and VIM) in GH3 cells.
Conclusions:
Spliceosome machinery provide novel insights into the pathogenesis of GH-secreting pituitary tumor and highlight the potential role of TCERG1 as a biomarker for tumor aggressiveness.
Insights
TCERG1 is elevated in growth hormone-secreting pituitary tumors, correlating with lower remission rates and increased invasion. Silencing TCERG1 reduces proliferation and invasion, suggesting its role in tumor aggressiveness.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Growth hormone (GH)-secreting pituitary tumors, or somatotroph adenomas, are a significant cause of acromegaly.
- Understanding the molecular mechanisms driving tumor pathogenesis is crucial for improving patient outcomes.
Purpose of the Study:
- To identify differentially expressed spliceosome components in GH-secreting pituitary tumors.
- To investigate the role of TCERG1 in the pathogenesis and aggressiveness of these tumors.
Main Methods:
- Transcriptome analysis of somatotroph adenomas and normal pituitary tissues.
- Correlation of gene expression with clinical characteristics in acromegaly patients.
- In vitro studies on GH3 cell proliferation, invasion, and gene expression following TCERG1 manipulation.
Main Results:
- TCERG1 expression was significantly higher in somatotroph adenomas compared to normal pituitaries.
- Elevated TCERG1 correlated with lower surgical remission rates and increased tumor invasion (cavernous sinus invasion, higher Ki67 index).
- TCERG1 overexpression increased proliferation and invasion in GH3 cells, while TCERG1 silencing decreased these parameters, affecting E-cadherin and vimentin expression.
Conclusions:
- Spliceosome components, particularly TCERG1, play a significant role in the pathogenesis of GH-secreting pituitary tumors.
- TCERG1 may serve as a potential biomarker for tumor aggressiveness and a therapeutic target.
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