11p15 Epimutations in Pediatric Embryonic Tumors: Insights from a Methylome Analysis

Author:

Silva Felipe Luz Torres12ORCID,Ruas Juliana Silveira1ORCID,Euzébio Mayara Ferreira12ORCID,Hoffmann Iva Loureiro3,Junqueira Thais3,Tedeschi Helder3,Pereira Luiz Henrique3,Cassone Alejandro Enzo3,Cardinalli Izilda Aparecida3,Seidinger Ana Luiza1ORCID,Jotta Patricia Yoshioka1ORCID,Maschietto Mariana12ORCID

Affiliation:

1. Research Center, Boldrini Children’s Hospital, Campinas 13083-884, SP, Brazil

2. Genetics and Molecular Biology, Institute of Biology, State University of Campinas, Campinas 13083-862, SP, Brazil

3. Boldrini Children’s Hospital, Campinas 13083-210, SP, Brazil

Abstract

Embryonic tumors share few recurrent mutations, suggesting that other mechanisms, such as aberrant DNA methylation, play a prominent role in their development. The loss of imprinting (LOI) at the chromosome region 11p15 is the germline alteration behind Beckwith–Wiedemann syndrome that results in an increased risk of developing several embryonic tumors. This study analyzed the methylome, using EPIC Beadchip arrays from 99 sporadic embryonic tumors. Among these tumors, 46.5% and 14.6% presented alterations at imprinted control regions (ICRs) 1 and 2, respectively. Based on the methylation levels of ICR1 and ICR2, four clusters formed with distinct methylation patterns, mostly for medulloblastomas (ICR1 loss of methylation (LOM)), Wilms tumors, and hepatoblastomas (ICR1 gain of methylation (GOM), with or without ICR2 LOM). To validate the results, the methylation status of 29 cases was assessed with MS-MLPA, and a high level of agreement was found between both methodologies: 93% for ICR1 and 79% for ICR2. The MS-MLPA results indicate that 15 (51.7%) had ICR1 GOM and 11 (37.9%) had ICR2 LOM. To further validate our findings, the ICR1 methylation status was characterized via digital PCR (dPCR) in cell-free DNA (cfDNA) extracted from peripheral blood. At diagnosis, we detected alterations in the methylation levels of ICR1 in 62% of the cases, with an agreement of 76% between the tumor tissue (MS-MLPA) and cfDNA methods. Among the disagreements, the dPCR was able to detect ICR1 methylation level changes presented at heterogeneous levels in the tumor tissue, which were detected only in the methylome analysis. This study highlights the prevalence of 11p15 methylation status in sporadic embryonic tumors, with differences relating to methylation levels (gain or loss), location (ICR1 or ICR2), and tumor types (medulloblastomas, Wilms tumors, and hepatoblastomas).

Funder

PRONON SIPAR

Ministério Público do Trabalho–PAJ

CNPq

FAPESP

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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