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Bilineal evolution of a U2AF1-mutated clone associated with acquisition of distinct secondary mutations

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BLOOD ADVANCES
卷 5, 期 24, 页码 5612-5616

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DOI: 10.1182/bloodadvances.2021005308

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A rare case of bilineal hematologic malignancy in a woman with B-lymphoblastic leukemia demonstrated evidence of both myeloid and lymphoid differentiation, suggesting a common precursor mutation in the U2AF1 gene. Targeted sequencing revealed distinct mutations in B-lymphoblasts and myeloid cells, indicating a process of divergent evolution and bilineal differentiation. This highlights the potential utility of fractionated sequencing in characterizing acute leukemia.
Rare hematologic malignancies display evidence of both myeloid and lymphoid differentiation. Here, we describe such a novel bilineal event discovered in an adult woman with B-lymphoblastic leukemia (BLL). At the time of BLL diagnosis, the patient had a normal karyotype and a bulk sequencing panel identified pathogenic variants in BCOR, EZH2, RUNX1, and U2AF1, a genotype more typical of myeloid neoplasia. Additionally, the patient was noted to have 3-year history of cytopenias, and morphologic dyspoiesis was noted on post-treatment samples, raising the possibility of an antecedent hematologic disorder. To investigate the clonal architecture of her disease, we performed targeted sequencing on fractionated samples enriched for either B-lymphoblasts or circulating granulocytes. These studies revealed a truncal founder mutation in the spliceosome gene U2AF1 in both fractions, while distinct secondary mutations were present only in B-lymphoblasts (BCOR, NRAS) or myeloid cells (ASXL1, EZH2, RUNX1). These results indicate that both processes evolved from a common U2AF1-mutated precursor, which then acquired additional mutations during a process of divergent evolution and bilineal differentiation. Our findings highlight an atypical mechanism of BLL leukemogenesis and demonstrate the potential utility of fractionated sequencing in the characterization of acute leukemia.

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