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Updated: May 19, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
IGFBP7 promoter methylation and gene expression analysis in prostate cancer
Linda Sullivan1, Therese M Murphy, Ciara Barrett
1Prostate Molecular Oncology, Institute of Molecular Medicine, Trinity College Dublin, Dublin, Ireland.
Purpose:
IGFBP7 belongs to a family of insulin-like growth factor-1 regulatory binding proteins. IGFBP7 hypermethylation is associated with its down-regulation in various carcinomas. In prostate cancer IGFBP7 down-regulation has been widely reported but to our knowledge the mechanisms behind this event are unknown. We performed a denaturing high performance liquid chromatography screening and validation strategy to profile the methylation status of IGFBP7 in prostate cancer.
Materials And Methods:
We combined denaturing high performance liquid chromatography and bisulfite sequencing to examine IGFBP7 methylation in a panel of prostate cancer cell lines. Quantitative methylation specific polymerase chain reaction was used to determine methylation levels in prostate tissue specimens of primary prostate cancer, histologically benign prostate adjacent to tumor, high grade prostatic intraepithelial neoplasia and benign prostatic hyperplasia. IGFBP7 gene expression was measured by quantitative methylation specific polymerase chain reaction in cell lines and tissue specimens.
Results:
IGFBP7 was methylated in the 4 prostate cancer cell lines DU145, LNCaP, PC-3 and 22RV1. Quantitative methylation specific polymerase chain reaction analysis revealed that promoter methylation was associated with decreased IGFBP7 expression. Quantitative methylation specific polymerase chain reaction showed that IGFBP7 methylation was more frequently detected in prostate cancer (60% (31/52)) and high grade prostatic intraepithelial neoplasia (40% (6/15)) samples compared to histologically benign prostate adjacent to tumor (10%) and benign prostatic hyperplasia (0%) samples.
Conclusions:
To our knowledge this is the first report of aberrant IGFBP7 promoter hypermethylation and concurrent IGFBP7 gene silencing in prostate cancer cell lines. Results demonstrate that CpG methylation of IGFBP7 may represent a novel biomarker of prostate cancer and pre-invasive neoplasms. Thus, future examination of IGFBP7 methylation and expression in a larger patient cohort, including bodily fluids, is justified to further evaluate its role in a diagnostic and prognostic setting.
Insights
Aberrant promoter hypermethylation of Insulin-like Growth Factor Binding Protein 7 (IGFBP7) silences its gene in prostate cancer. This methylation is a potential novel biomarker for prostate cancer and pre-invasive neoplasms.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Insulin-like Growth Factor Binding Protein 7 (IGFBP7) is part of a family of regulatory binding proteins.
- IGFBP7 hypermethylation is linked to its down-regulation in various carcinomas.
- Down-regulation of IGFBP7 in prostate cancer is reported, but the underlying mechanisms remain unclear.
Purpose of the Study:
- To investigate the methylation status of IGFBP7 in prostate cancer.
- To identify the mechanisms behind IGFBP7 down-regulation in prostate cancer.
- To evaluate IGFBP7 as a potential biomarker for prostate cancer.
Main Methods:
- Utilized denaturing high performance liquid chromatography and bisulfite sequencing to analyze IGFBP7 methylation in prostate cancer cell lines.
- Employed quantitative methylation-specific polymerase chain reaction (QMSP) to assess IGFBP7 methylation levels in prostate cancer tissues and cell lines.
- Measured IGFBP7 gene expression using QMSP in both cell lines and tissue specimens.
Main Results:
- IGFBP7 promoter methylation was detected in all four prostate cancer cell lines studied.
- Promoter methylation of IGFBP7 correlated with decreased IGFBP7 gene expression.
- IGFBP7 methylation was significantly more prevalent in primary prostate cancer (60%) and high-grade prostatic intraepithelial neoplasia (40%) compared to benign prostate tissues (10%) and benign prostatic hyperplasia (0%).
Conclusions:
- This study is the first to report aberrant IGFBP7 promoter hypermethylation and gene silencing in prostate cancer cell lines.
- CpG methylation of IGFBP7 shows promise as a novel biomarker for prostate cancer and pre-invasive lesions.
- Further research with larger cohorts and bodily fluids is warranted to validate IGFBP7's diagnostic and prognostic potential.
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