SF3B1 haploinsufficiency leads to formation of ring sideroblasts in myelodysplastic syndromes

单倍率不足 生物 骨髓增生异常综合症 剪接体 癌症研究 RNA剪接 表型 铁粒细胞性贫血 血小板增多症 突变 遗传学 内含子 基因 免疫学 核糖核酸 骨髓 血小板
作者
Valeria Visconte,Heesun J. Rogers,Jarnail Singh,John Barnard,Manoj Bupathi,Fabı́ola Traina,James T. McMahon,Hideki Makishima,Hadrian Szpurka,Anna Jankowska,Andrés Jerez,Mikkael A. Sekeres,Yogen Saunthararajah,Anjali S. Advani,Edward A. Copelan,Haruhiko Koseki,Kyoichi Isono,Richard A. Padgett,Sami Osman,Kazunori Koide,Christine L. O’Keefe,Jaroslaw P. Maciejewski,Ramón V. Tiu
出处
期刊:Blood [American Society of Hematology]
卷期号:120 (16): 3173-3186 被引量:180
标识
DOI:10.1182/blood-2012-05-430876
摘要

Abstract Whole exome/genome sequencing has been fundamental in the identification of somatic mutations in the spliceosome machinery in myelodysplastic syndromes (MDSs) and other hematologic disorders. SF3B1, splicing factor 3b subunit 1 is mutated in 60%-80% of refractory anemia with ring sideroblasts (RARS) and RARS associated with thrombocytosis (RARS-T), 2 distinct subtypes of MDS and MDS/myeloproliferative neoplasms (MDSs/MPNs). An idiosyncratic feature of RARS/RARS-T is the presence of abnormal sideroblasts characterized by iron overload in the mitochondria, called RS. Based on the high frequency of mutations of SF3B1 in RARS/RARS-T, we investigated the consequences of SF3B1 alterations. Ultrastructurally, SF3B1 mutants showed altered iron distribution characterized by coarse iron deposits compared with wild-type RARS patients by transmission electron microscopy. SF3B1 knockdown experiments in K562 cells resulted in down-regulation of U2-type intron-splicing by RT-PCR. RNA-sequencing analysis of SF3B1 mutants showed differentially used genes relevant in MDS pathogenesis, such as ASXL1, CBL, EZH, and RUNX families. A SF3B pharmacologic inhibitor, meayamycin, induced the formation of RS in healthy BM cells. Further, BM aspirates of Sf3b1 heterozygous knockout mice showed RS by Prussian blue. In conclusion, we report the first experimental evidence of the association between SF3B1 and RS phenotype. Our data suggest that SF3B1 haploinsufficiency leads to RS formation.
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