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Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Glioma Malignancy-Dependent NDRG2 Gene Methylation and Downregulation Correlates with Poor Patient Outcome
Daina Skiriutė1, Giedrius Steponaitis1, Paulina Vaitkienė1
11. 1 Laboratory of Neurooncology and Genetics, Neuroscience Institute, Medical Academy, Lithuanian University of Health Sciences, Eiveniu str. 4, LT-50009, Kaunas, Lithuania.
Aims:
NDRG2 (N-myc downstream regulated gene 2) gene is involved in important biological processes: cell differentiation, growth and apoptosis. Several molecular studies have shown NDRG2 as a promising diagnostic marker involved in brain tumor pathology. The aim of the study was to investigate how changes in epigenetic modification and activity of NDRG2 reflect on glioma malignancy and patient outcome.
Methods:
137 different malignancy grade gliomas were used as the study material: 14 pilocytic astrocytomas grade I, 45 diffuse astrocytomas grade II, 29 anaplastic astrocytomas grade III, and 49 grade IV astrocytomas (glioblastomas). Promoter methylation analysis has been carried out by using methylation-specific PCR, whereas RT-PCR and Western-blot analyses were used to measure NDRG2 expression levels.
Results:
We demonstrated that NDRG2 gene methylation frequency increased whereas expression at both mRNA and protein levels markedly decreased in glioblastoma specimens compared to the lower grade astrocytomas. NDRG2 transcript and protein levels did not correlate with the promoter methylation state, suggesting the presence of alternative regulatory gene expression mechanisms that may operate in a tissue-specific manner in gliomas. Kaplan-Meier analyses revealed significant differences in survival time in gliomas stratified by NDRG2 methylation status and mRNA and protein expression levels.
Conclusions:
Our findings highlight the usefulness of combining epigenetic data to gene expression patterns at mRNA and protein level in tumor biomarker studies, and suggest that NDRG2 downregulation might bear influence on glioma tumor progression while being associated with higher malignancy grade.
Insights
NDRG2 (N-myc downstream regulated gene 2) gene downregulation and increased methylation correlate with higher glioma malignancy. This suggests NDRG2 may influence tumor progression and patient survival in brain tumors.
Area of Science:
- Neuro-oncology
- Epigenetics
- Molecular Biology
Background:
- NDRG2 (N-myc downstream regulated gene 2) is implicated in cell differentiation, growth, and apoptosis.
- NDRG2 shows potential as a diagnostic marker in brain tumor pathology.
- Epigenetic modifications and NDRG2 activity may influence glioma malignancy and patient outcomes.
Purpose of the Study:
- To investigate the relationship between epigenetic modifications of NDRG2 and its expression levels in gliomas.
- To determine how NDRG2 alterations correlate with glioma malignancy grade.
- To assess the impact of NDRG2 changes on patient survival.
Main Methods:
- Analysis of 137 gliomas across malignancy grades (I-IV).
- Promoter methylation analysis using methylation-specific PCR.
- NDRG2 mRNA and protein expression measured by RT-PCR and Western blot.
Main Results:
- Increased NDRG2 gene methylation and decreased mRNA/protein expression observed in glioblastomas compared to lower-grade gliomas.
- NDRG2 expression levels did not directly correlate with promoter methylation, indicating alternative regulatory mechanisms.
- Kaplan-Meier analysis showed significant differences in survival based on NDRG2 methylation status and expression.
Conclusions:
- Combining epigenetic and gene expression data is valuable for tumor biomarker studies.
- NDRG2 downregulation is associated with increased glioma malignancy and may influence tumor progression.
- NDRG2 alterations serve as potential prognostic indicators in glioma patients.
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