Wilms Tumour (WT), the most common kidney cancer in children, presents features of altered kidney development and frequently exhibits molecular alterations at the 11p15.5 imprinted locus, affecting the IGF2 and H19 genes, which contribute to tumour growth and predisposition. The epigenetic landscape beyond 11p15.5 suggests diagnostic and prognostic potential, but its link to transcriptomic changes is largely unexplored. We integrated methylomic and transcriptomic datasets of 27 primary tumours and matched non-neoplastic kidneys. DNA methylation profiling identified around 9000 differentially methylated CpG sites distinguishing neoplastic from non-neoplastic tissue and other paediatric cancers, thus representing a novel WT-specific epigenetic signature. We found that cases with Imprinting Centre 1 (IC1) gain of methylation exhibited the most extensive epigenetic alterations; cases with 11p15.5 loss of heterozygosity showed intermediate changes, whereas regressive tumours with largely normal 11p15.5 status were less affected. Three methylation clusters corresponding to transcriptomic subtypes were identified, characterised by distinct tumour microenvironment and chemosensitivity predictions: a regressive-enriched, immune-infiltrated group predicted to respond to paclitaxel, a proliferative group sensitive to doxorubicin, and a stromal-like intermediate group. Combined analysis of methylation and expression data revealed more than 900 genes under epigenetic control, which contributed to defining the WT subtypes. Analysis of the IGF2/H19 locus uncovered multiple regulatory mechanisms underlying IGF2 activation, including imprinting defects at IC1, methylation changes at DMR0, differential promoter usage and transcriptional modulation by PLAG1 and BAHD1. These findings define the epigenetic alterations underlying WT heterogeneity and support improved molecular stratification and therapeutic approaches.

DNA Methylation and Transcriptomic Profiles of Wilms Tumour Reveal New Deregulated Genes and Epigenetic Processes Relevant for Tumour Stratification and Management

Saadat, Abu;Cecere, Francesco;Rossetti, Federica;Pignata, Laura;D'Angelo, Emilia;Giaccari, Carlo;Cerrato, Flavia;Riccio, Andrea
;
Sparago, Angela
2026

Abstract

Wilms Tumour (WT), the most common kidney cancer in children, presents features of altered kidney development and frequently exhibits molecular alterations at the 11p15.5 imprinted locus, affecting the IGF2 and H19 genes, which contribute to tumour growth and predisposition. The epigenetic landscape beyond 11p15.5 suggests diagnostic and prognostic potential, but its link to transcriptomic changes is largely unexplored. We integrated methylomic and transcriptomic datasets of 27 primary tumours and matched non-neoplastic kidneys. DNA methylation profiling identified around 9000 differentially methylated CpG sites distinguishing neoplastic from non-neoplastic tissue and other paediatric cancers, thus representing a novel WT-specific epigenetic signature. We found that cases with Imprinting Centre 1 (IC1) gain of methylation exhibited the most extensive epigenetic alterations; cases with 11p15.5 loss of heterozygosity showed intermediate changes, whereas regressive tumours with largely normal 11p15.5 status were less affected. Three methylation clusters corresponding to transcriptomic subtypes were identified, characterised by distinct tumour microenvironment and chemosensitivity predictions: a regressive-enriched, immune-infiltrated group predicted to respond to paclitaxel, a proliferative group sensitive to doxorubicin, and a stromal-like intermediate group. Combined analysis of methylation and expression data revealed more than 900 genes under epigenetic control, which contributed to defining the WT subtypes. Analysis of the IGF2/H19 locus uncovered multiple regulatory mechanisms underlying IGF2 activation, including imprinting defects at IC1, methylation changes at DMR0, differential promoter usage and transcriptional modulation by PLAG1 and BAHD1. These findings define the epigenetic alterations underlying WT heterogeneity and support improved molecular stratification and therapeutic approaches.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11591/605084
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