Aberrant EVI1 splicing contributes to EVI1-rearranged leukemia

生物 RNA剪接 外显子 内含子 遗传学 髓样 运行x1 增强子 选择性拼接 髓系白血病 剪接体 染色体易位 癌症研究 分子生物学 造血 核糖核酸 基因 转录因子 干细胞
作者
Atsushi Tanaka,Taizo A. Nakano,Masaki Nomura,Hiromi Yamazaki,Jan Philipp Bewersdorf,Roger Mulet‐Lazaro,Simon J. Hogg,Bo Liu,Alex Penson,Akihiko Yokoyama,Weijia Zang,Marije Havermans,Miho Koizumi,Yasutaka Hayashi,Hana Cho,Akinori Kanai,Stanley Chun-Wei Lee,Muran Xiao,Yui Koike,Yifan Zhang
出处
期刊:Blood [American Society of Hematology]
卷期号:140 (8): 875-888 被引量:20
标识
DOI:10.1182/blood.2021015325
摘要

Abstract Detailed genomic and epigenomic analyses of MECOM (the MDS1 and EVI1 complex locus) have revealed that inversion or translocation of chromosome 3 drives inv(3)/t(3;3) myeloid leukemias via structural rearrangement of an enhancer that upregulates transcription of EVI1. Here, we identify a novel, previously unannotated oncogenic RNA-splicing derived isoform of EVI1 that is frequently present in inv(3)/t(3;3) acute myeloid leukemia (AML) and directly contributes to leukemic transformation. This EVI1 isoform is generated by oncogenic mutations in the core RNA splicing factor SF3B1, which is mutated in >30% of inv(3)/t(3;3) myeloid neoplasm patients and thereby represents the single most commonly cooccurring genomic alteration in inv(3)/t(3;3) patients. SF3B1 mutations are statistically uniquely enriched in inv(3)/t(3;3) myeloid neoplasm patients and patient-derived cell lines compared with other forms of AML and promote mis-splicing of EVI1 generating an in-frame insertion of 6 amino acids at the 3′ end of the second zinc finger domain of EVI1. Expression of this EVI1 splice variant enhanced the self-renewal of hematopoietic stem cells, and introduction of mutant SF3B1 in mice bearing the humanized inv(3)(q21q26) allele resulted in generation of this novel EVI1 isoform in mice and hastened leukemogenesis in vivo. The mutant SF3B1 spliceosome depends upon an exonic splicing enhancer within EVI1 exon 13 to promote usage of a cryptic branch point and aberrant 3′ splice site within intron 12 resulting in the generation of this isoform. These data provide a mechanistic basis for the frequent cooccurrence of SF3B1 mutations as well as new insights into the pathogenesis of myeloid leukemias harboring inv(3)/t(3;3).

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