Novel and Rare Fusion Transcripts Involving Transcription Factors and Tumor Suppressor Genes in Acute Myeloid Leukemia

Author:

Padella AntonellaORCID,Simonetti GiorgiaORCID,Paciello Giulia,Giotopoulos George,Baldazzi CarmenORCID,Righi Simona,Ghetti Martina,Stengel Anna,Guadagnuolo Viviana,De Tommaso Rossella,Papayannidis CristinaORCID,Robustelli Valentina,Franchini Eugenia,Ghelli Luserna di Rorà Andrea,Ferrari Anna,Fontana Maria Chiara,Bruno Samantha,Ottaviani Emanuela,Soverini Simona,Storlazzi Clelia TizianaORCID,Haferlach Claudia,Sabattini Elena,Testoni Nicoletta,Iacobucci Ilaria,Huntly Brian J. P.,Ficarra ElisaORCID,Martinelli Giovanni

Abstract

Approximately 18% of acute myeloid leukemia (AML) cases express a fusion transcript. However, few fusions are recurrent across AML and the identification of these rare chimeras is of interest to characterize AML patients. Here, we studied the transcriptome of 8 adult AML patients with poorly described chromosomal translocation(s), with the aim of identifying novel and rare fusion transcripts. We integrated RNA-sequencing data with multiple approaches including computational analysis, Sanger sequencing, fluorescence in situ hybridization and in vitro studies to assess the oncogenic potential of the ZEB2-BCL11B chimera. We detected 7 different fusions with partner genes involving transcription factors (OAZ-MAFK, ZEB2-BCL11B), tumor suppressors (SAV1-GYPB, PUF60-TYW1, CNOT2-WT1) and rearrangements associated with the loss of NF1 (CPD-PXT1, UTP6-CRLF3). Notably, ZEB2-BCL11B rearrangements co-occurred with FLT3 mutations and were associated with a poorly differentiated or mixed phenotype leukemia. Although the fusion alone did not transform murine c-Kit+ bone marrow cells, 45.4% of 14q32 non-rearranged AML cases were also BCL11B-positive, suggesting a more general and complex mechanism of leukemogenesis associated with BCL11B expression. Overall, by combining different approaches, we described rare fusion events contributing to the complexity of AML and we linked the expression of some chimeras to genomic alterations hitting known genes in AML.

Funder

Seventh Framework Programme

European Hematology Association

Associazione Italiana per la Ricerca sul Cancro

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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