Genomic and clinical characterization of B/T mixed phenotype acute leukemia reveals recurrent features and T-ALL like mutations.
Xiaoli MiGabriel GriffinWinston LeeSanjay PatelRobert OhgamiChi Young OkSa WangJulia T GeyerWenbin XiaoMikhail RoshalJacqueline S GarciaLewis B SilvermanStephen E SallanJon C AsterMarian H HarrisOlga K WeinbergPublished in: American journal of hematology (2018)
The B/T subtype of mixed phenotype acute leukemia (B/T MPAL) is defined by co-expression of antigens of both B- and T-cell lineages on leukemic blasts. Although it has been suggested that multilineage antigen expression portends poor response to chemotherapy, the clinical characteristics and driver mutations that underlie the pathogenesis of this rare subtype of acute leukemia are scarcely known. We identified nine cases of B/T MPAL from multiple institutions and correlated clinical and immunophenotypic findings with next-generation sequencing data. We report that B/T MPAL commonly presents with lymphadenopathy in adolescence and young adulthood. While the tumors have diverse cytogenetic and genomic perturbations, recurrent acquired aberrations include mutations in the putative transcriptional regulator PHF6 and the JAK-STAT and Ras signaling pathways. Alterations were also identified in genes encoding hematopoietic transcription factors, cell cycle regulators/tumor suppressors, and chromatin modifying enzymes. The genomic landscape of B/T MPAL strongly resembles that of T-ALL subgroups associated with early developmental arrest, while genetic alterations that are common in B-ALL were rarely seen. Two-thirds of the patients responded to ALL-based chemotherapy with or without stem cell transplantation. Our observations lay the groundwork for further study of the unique biology and clinical trajectory of B/T MPAL.
Keyphrases
- cell cycle
- transcription factor
- copy number
- stem cell transplantation
- genome wide
- poor prognosis
- gene expression
- signaling pathway
- high dose
- cell proliferation
- end stage renal disease
- depressive symptoms
- dna damage
- newly diagnosed
- ejection fraction
- radiation therapy
- dna methylation
- bone marrow
- oxidative stress
- dna binding
- patient reported outcomes
- epithelial mesenchymal transition
- single cell
- low dose
- heat shock
- data analysis