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RESEARCH PAPER ANALYSIS

The landscape of structural variation in pediatric cancer.

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PMID41030971
JournalbioRxiv : the preprint server for biology
Publication Date2025-04-26
Ingested2026-08-02 12:04 AM
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ABSTRACT

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Structural variants (SVs) account for over 60% of the driver variants in pediatric cancer, and in many cases act as the cancer initiating event. To study SVs from a pan-cancer perspective, we analyzed 1,616 pediatric cancer genomes in 16 major cancer types of hematological malignancies (n = 908), brain tumors (n = 183), and solid tumors (n = 525) and compared their profiles to those of 2,203 adult cancers. The SV burden varied ~100-fold across pediatric cancer types and demonstrated an 8- to 16-fold reduction compared to adult brain and solid tumors but was comparable in pediatric versus adult hematological malignancies. Recurrent SV hotspots occurred uniquely in pediatric acute lymphoblastic leukemias (ALLs) in proximity to RAG-mediated recombination signal sequences (RSS) and disrupted multiple immune-related loci as well as 69 genes, which often involved cryptic RSS sites. By contrast, such hotspots affected only immune-related loci but not driver genes in adult lymphoid cancers. Eight SV signatures extracted from the cohort had varying distributions across cancer types, with clustered translocations reflecting templated insertions in osteosarcoma, and medium-sized deletions (10 kb to 1 Mb) enriched in cancers with RAG-mediated deletions. Intra-patient evolutionary analysis in 13 patients with multiple spatiotemporally distinct samples revealed that RAG-mediated recombination in leukemia and complex rearrangements in solid tumors occurred both early in disease initiation and continuously during later diversification, contributing to clonal heterogeneity. Finally, we found that both driver genes and fragile sites were the two genomic regions most frequently disrupted by SVs. The unique and diverse SV landscapes that emerged from this comprehensive analysis expand the scope of RSS-mediated mutagenesis in pediatric ALL and will be a valuable resource for guiding future functional studies and the design of clinical genomic testing in pediatric cancer.

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Annals of pediatric cardiology 58.5 13 Prevalence and genotype distribution of human papillomavirus (HPV) among adolescent girls and young women in a high HIV burden rural area of South Africa: a cross-sectional survey. medRxiv : the preprint server for health sciences 61.0 14 Delayed B-cell reconstitution in the bone marrow precedes the development of chronic graft-versus-host disease following pediatric hematopoietic stem cell transplantation. Frontiers in immunology 61.7 15 Parental and childhood exposures and the risk of retinoblastoma, hepatoblastoma, and germ cell, bone, and soft tissue tumors in children: a systematic review and meta-analysis. Frontiers in oncology 73.0 16 Clinical outcomes in pediatric acute lymphoblastic leukemia: a retrospective cohort study from a tertiary center in Indonesia. Frontiers in pediatrics 62.7 17 PROX1-associated lymphatic reprogramming signatures in pediatric adamantinomatous craniopharyngioma: a comparative study with adult cases. 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World journal for pediatric & congenital heart surgery 58.4 30 Palliative Care Support for Pediatric Cancer Patients Enrolled in Phase I Clinical Trials. Journal of palliative medicine 78.8 31 Acute abdominal presentation of mantle cell lymphoma mimicking acute appendicitis: a case report. Journal of surgical case reports 47.5 32 AGA Clinical Practice Update on Surveillance of Pancreatic Cystic Lesions and Hepatocellular Carcinoma in Older Adults: Expert Review. Clinical gastroenterology and hepatology : the official clinical practice journal of the American Gastroenterological Association 75.9
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The landscape of structural variation in pediatric cancer.

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