DOI: 10.1002/path.70096 ISSN: 0022-3417

Optical genome mapping enhanced by refined variant interpretation in pediatric acute lymphoblastic leukemia

Anna Bekő, Borbála Péterffy, Alex Hughes, Janka Sára Jakab, Irén Haltrich, Kristóf Balázs Árvai, Gábor Bedics, Katalin Csonka, Gergő Papp, Dóra Kapczár, Bettina Aranka Bohusné Barta, Lajos László Hegyi, Gábor Szalóki, Gábor Barna, András Matolcsy, Bálint Egyed, Zsuzsanna Hevessy, Anne Benard‐Slagter, Sander Palit, Suvi Savola, Csaba Bödör, Donát Alpár

Abstract

Reliable detection of structural variants (SVs) and copy number variations (CNVs) is crucial in the contemporary diagnostics of pediatric B‐cell acute lymphoblastic leukemia (B‐ALL). However, limitations of commonly used conventional and molecular cytogenetic methods may hinder the accurate genetic characterization of patients. Optical genome mapping (OGM) offers a reliable alternative by enabling high‐resolution, genome‐wide detection of CNVs and SVs. Chromosomal aberrations were screened using OGM in 51 children with B‐ALL. The results were compared with those of karyotyping, fluorescence in situ hybridization (FISH), digital multiplex ligation‐dependent probe amplification (digitalMLPA), and targeted RNA sequencing (RNA‐seq). OGM data showed high congruency with karyotyping and FISH findings, detecting clinically relevant variants beyond G‐banding results and unraveling a complex KMT2A fusion undetected by FISH. Gene fusions involved in complex ETV6 :: RUNX1 translocations, but not detected by RNA‐seq, were confirmed using FISH. Normalization of OGM copy number values with DNA‐index‐improved concordance with FISH‐derived copy numbers in near‐tri/tetraploid cases. In the peripheral regions of OGM variants (fringe‐zones), a novel evaluation strategy called ‘ FriZone ’ was applied, which significantly improved the concordance between OGM and digitalMLPA. In addition, a co‐segregation analysis revealed strong associations between ETV6 :: RUNX1 fusion and deletions of ETV6 , RAG2 , and NR3C2 . OGM uncovered complex rearrangements undetected by widely used methods in 15% of cases, improving genetic classification and risk stratification in 10% of the patients. The FriZone analysis and normalization by DNA‐index provide a refined, more accurate approach to OGM variant interpretation, facilitating the efficient application of OGM in clinical diagnostics. © 2026 The Author(s). The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.

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