Thank you! Your submission has been received!
Oops! Something went wrong while submitting the form.
X
X

Publications

UBTF tandem duplications in pediatric myelodysplastic syndrome and acute myeloid leukemia: implications for clinical screening and diagnosis


Juan M Barajas, Masayuki Umeda, Lisett Contreras, Mahsa Khanlari, Tamara Westover, Michael P Walsh, Emily Xiong, Chenchen Yang, Brittney Otero, Marc Arribas-Layton, Sherif Abdelhamed, Guangchun Song, Xiaotu Ma, Melvin E Thomas, Jing Ma, Jeffery M Klco
Haematologica Feb 2024
Abstract

Recent genomic studies in adult and pediatric acute myeloid leukemia (AML) demonstrated recurrent in-frame tandem duplications (TD) in exon 13 of upstream binding transcription factor (UBTF). These alterations, which account for ~4.3% of AMLs in childhood and up to 3% in adult AMLs under 60, are subtype-defining and associated with poor outcomes. Here, we provide a comprehensive investigation into the clinicopathological features of UBTF-TD myeloid neoplasms in childhood, including 89 unique pediatric AML and 6 myelodysplastic syndrome (MDS) cases harboring a tandem duplication in exon 13 of UBTF. We demonstrate that UBTF-TD myeloid tumors are associated with dysplastic features, low bone marrow blast infiltration, and low white blood cell count. Furthermore, using bulk and single-cell analyses, we confirm that UBTF-TD is an early and clonal event associated with a distinct transcriptional profile, whereas the acquisition of FLT3 or WT1 mutations is associated with more stem cell-like programs. Lastly, we report rare duplications within exon 9 of UBTF that phenocopy exon 13 duplications, expanding the spectrum of UBTF alterations in pediatric myeloid tumors. Collectively, we comprehensively characterize pediatric AML and MDS with UBTF-TD and highlight key clinical and pathologic features that distinguish this new entity from other molecular subtypes of AML.

VIEW

Area

Heme

Institution Type

Academia

Indication / Modality

Myelodysplastic Syndrome (MDS)

Goal of Study

Clinical Profiling

Key Genes

WT1, NRAS, FLT3

PAD Project

No

Analytes Assessed

Extracellular Protein, InDels, SNV

Species

Human

Panel Used

Custom

Proof Point Demonstrated

Multi-omics, Co-occurrence, Zygosity, Clonality, Phylogeny
REQUEST QUOTE