Literature DB >> 34624096

ETV6-NCOA2 fusion induces T/myeloid mixed-phenotype leukemia through transformation of nonthymic hematopoietic progenitor cells.

Hila Fishman1,2,3, Shreyas Madiwale1,3, Ifat Geron1,2,3, Vase Bari4, Wouter Van Loocke5, Yael Kirschenbaum1,2, Itamar Ganmore1,2, Eitan Kugler1,2,3, Avigail Rein-Gil1,2,3, Gilgi Friedlander6, Ginette Schiby7, Yehudit Birger1,2,3, Sabine Strehl8, Jean Soulier9, Birgit Knoechel10, Adolfo Ferrando11, Sharon Noy-Lotan3, Arnon Nagler1,12, James C Mulloy4, Pieter Van Vlierberghe5, Shai Izraeli1,2,3,13.   

Abstract

Mixed-phenotype acute leukemia is a rare subtype of leukemia in which both myeloid and lymphoid markers are co-expressed on the same malignant cells. The pathogenesis is largely unknown, and the treatment is challenging. We previously reported the specific association of the recurrent t(8;12)(q13;p13) chromosomal translocation that creates the ETV6-NCOA2 fusion with T/myeloid leukemias. Here we report that ETV6-NCOA2 initiates T/myeloid leukemia in preclinical models; ectopic expression of ETV6-NCOA2 in mouse bone marrow hematopoietic progenitors induced T/myeloid lymphoma accompanied by spontaneous Notch1-activating mutations. Similarly, cotransduction of human cord blood CD34+ progenitors with ETV6-NCOA2 and a nontransforming NOTCH1 mutant induced T/myeloid leukemia in immunodeficient mice; the immunophenotype and gene expression pattern were similar to those of patient-derived ETV6-NCOA2 leukemias. Mechanistically, we show that ETV6-NCOA2 forms a transcriptional complex with ETV6 and the histone acetyltransferase p300, leading to derepression of ETV6 target genes. The expression of ETV6-NCOA2 in human and mouse nonthymic hematopoietic progenitor cells induces transcriptional dysregulation, which activates a lymphoid program while failing to repress the expression of myeloid genes such as CSF1 and MEF2C. The ETV6-NCOA2 induced arrest at an early immature T-cell developmental stage. The additional acquisition of activating NOTCH1 mutations transforms the early immature ETV6-NCOA2 cells into T/myeloid leukemias. Here, we describe the first preclinical model to depict the initiation of T/myeloid leukemia by a specific somatic genetic aberration.
© 2022 by The American Society of Hematology.

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Year:  2022        PMID: 34624096     DOI: 10.1182/blood.2020010405

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  1 in total

1.  T/myeloid MPAL: origin and pathogenesis.

Authors:  Matthew P McCormack
Journal:  Blood       Date:  2022-01-20       Impact factor: 22.113

  1 in total

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