Optical genome mapping identifies a novel pediatric embryonal tumor with a ZNF532::NUTM1 fusion

Author:

Bornhorst Miriam12345ORCID,Eze Augustine23,Bhattacharya Surajit3,Putnam Ethan23,Almira‐Suarez M Isabel6,Rossi Christopher6,Kambhampati Madhuri3,Almalvez Miguel3,Barseghyan Mariam7,Del Risco Nicole8,Dotson David9,Turner Joyce10,Myseros John S11,Vilain Eric312,Packer Roger J25,Nazarian Javad2312,Rood Brian12413,Barseghyan Hayk312

Affiliation:

1. Division of Hematology/Oncology Children's National Hospital Washington DC USA

2. Brain Tumor Institute, Children's National Hospital Washington DC USA

3. Center for Genetics Medicine Research Children's National Hospital Washington DC USA

4. Department of Pediatrics School of Medicine and Health Sciences, George Washington University Washington DC USA

5. Center for Neuroscience and Behavioral Medicine Children's National Hospital Washington DC USA

6. Divison of Pathology Children's National Hospital Washington DC USA

7. Department of Obstetrics and Gynecology MedStar Georgetown University Hospital Washington DC USA

8. School of Medicine and Health Sciences, George Washington University Washington DC USA

9. College of Wooster Wooster OH USA

10. Division of Genetics and Metabolism Children's National Hospital Washington DC USA

11. Division of Neurosurgery Children's National Hospital Washington DC USA

12. Center for Genomics and Precision Medicine, School of Medicine and Health Sciences George Washington University Washington DC USA

13. Center for Cancer and Immunology Research, Children's National Hospital Washington DC USA

Abstract

AbstractThe molecular characteristics of pediatric brain tumors have not only allowed for tumor subgrouping but have led to the introduction of novel treatment options for patients with specific tumor alterations. Therefore, an accurate histologic and molecular diagnosis is critical for optimized management of all pediatric patients with brain tumors, including central nervous system embryonal tumors. We present a case where optical genome mapping identified a ZNF532::NUTM1 fusion in a patient with a unique tumor best characterized histologically as a central nervous system embryonal tumor with rhabdoid features. Additional analyses including immunohistochemistry for NUT protein, methylation array, whole genome, and RNA‐sequencing was done to confirm the presence of the fusion in the tumor. This is the first description of a pediatric patient with a ZNF532::NUTM1 fusion, yet the histology of this tumor is similar to that of adult cancers with ZNF::NUTM1 fusions reported in the literature. Although rare, the distinct pathology and underlying molecular characteristics of the ZNF532::NUTM1 tumor separates this from other embryonal tumors. Therefore, screening for this or similar NUTM1 rearrangements should be considered for all patients with unclassified central nervous system tumors with rhabdoid features to ensure accurate diagnosis. Ultimately, with additional cases, we may be able to better inform therapeutic management for these patients. © 2023 The Pathological Society of Great Britain and Ireland.

Funder

Children's Cancer Foundation

Publisher

Wiley

Subject

Pathology and Forensic Medicine

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