Related Experiment Video
Updated: May 6, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
Genome-wide promoter methylome of small renal masses
Ilsiya Ibragimova1, Michael J Slifker, Marie E Maradeo
1Cancer Epigenetics Program and Kidney Keystone Program, Fox Chase Cancer Center, Philadelphia, Pennsylvania, United States of America.
Abstract:
The majority of renal cell carcinoma (RCC) is now incidentally detected and presents as small renal masses (SRMs) defined as ≤ 4 cm in size. SRMs are heterogeneous comprising several histological types of RCC each with different biology and behavior, and benign tumors mainly oncocytoma. The varied prognosis of the different types of renal tumor has implications for management options. A key epigenetic alteration involved in the initiation and progression of cancer is aberrant methylation in the promoter region of a gene. The hypermethylation is associated with transcriptional repression and is an important mechanism of inactivation of tumor suppressor genes in neoplastic cells. We have determined the genome-wide promoter methylation profiles of 47 pT1a and 2 pT1b clear cell, papillary or chromophobe RCC, 25 benign renal oncocytoma ≤ 4 cm and 4 normal renal parenchyma specimens by Infinium HumanMethylation27 beadchip technology. We identify gene promoter hypermethylation signatures that distinguish clear cell and papillary from each other, from chromophobe and oncocytoma, and from normal renal cells. Pairwise comparisons revealed genes aberrantly hypermethylated in a tumor type but unmethylated in normal, and often unmethylated in the other renal tumor types. About 0.4% to 1.7% of genes comprised the promoter methylome in SRMs. The Infinium methylation score for representative genes was verified by gold standard technologies. The genes identified as differentially methylated implicate pathways involved in metabolism, tissue response to injury, epithelial to mesenchymal transition (EMT), signal transduction and G-protein coupled receptors (GPCRs), cancer, and stem cell regulation in the biology of RCC. Our findings contribute towards an improved understanding of the development of RCC, the different biology and behavior of histological types, and discovery of molecular subtypes. The differential methylation signatures may have utility in early detection and particularly differential diagnosis for prognostic stratification as well as identify novel gene and pathway targets for therapeutic intervention.
Insights
This study reveals distinct gene promoter methylation patterns in small renal masses, differentiating clear cell, papillary, and chromophobe renal cell carcinoma (RCC) from each other and benign oncocytoma. These signatures offer potential for improved diagnosis and targeted therapies for kidney cancer.
Area of Science:
- Oncology
- Epigenetics
- Genomics
Background:
- Small renal masses (SRMs) ≤ 4 cm are often incidentally detected, comprising heterogeneous renal cell carcinoma (RCC) subtypes and benign oncocytoma.
- Different renal tumor types exhibit varied prognoses, impacting clinical management decisions.
- Aberrant gene promoter hypermethylation is a key epigenetic alteration in cancer, leading to tumor suppressor gene inactivation.
Purpose of the Study:
- To determine genome-wide promoter methylation profiles of various SRMs and normal kidney tissue.
- To identify distinct methylation signatures that differentiate RCC subtypes and benign tumors.
- To explore the potential utility of these signatures in early detection, differential diagnosis, and therapeutic targeting.
Main Methods:
- Genome-wide promoter methylation profiling using Infinium HumanMethylation27 beadchip technology.
- Analysis of 47 clear cell, papillary, or chromophobe RCCs (pT1a/pT1b), 25 benign oncocytomas, and 4 normal renal parenchyma specimens.
- Validation of methylation scores using gold standard technologies.
Main Results:
- Identified unique gene promoter hypermethylation signatures distinguishing clear cell and papillary RCC from chromophobe RCC, oncocytoma, and normal renal cells.
- Discovered differentially methylated genes implicated in metabolism, tissue injury response, epithelial-to-mesenchymal transition (EMT), signal transduction, and stem cell regulation.
- Found that 0.4% to 1.7% of genes constituted the promoter methylome in SRMs.
Conclusions:
- Gene methylation signatures provide insights into the distinct biology and behavior of RCC histological subtypes.
- Differential methylation patterns may aid in the early detection and prognostic stratification of renal tumors.
- Identified molecular targets for potential therapeutic interventions in RCC.
Related Concept Videos
Epigenetic Regulation
X-chromosome...
Epigenetic Regulation

