SF3B1 haploinsufficiency leads to formation of ring sideroblasts in myelodysplastic syndromes

Author:

Visconte Valeria1,Rogers Heesun J.2,Singh Jarnail3,Barnard John4,Bupathi Manoj1,Traina Fabiola5,McMahon James6,Makishima Hideki1,Szpurka Hadrian1,Jankowska Anna1,Jerez Andres1,Sekeres Mikkael A.17,Saunthararajah Yogen17,Advani Anjali S.7,Copelan Edward7,Koseki Haruhiko8,Isono Kyoichi8,Padgett Richard A.3,Osman Sami9,Koide Kazunori9,O'Keefe Christine1,Maciejewski Jaroslaw P.17,Tiu Ramon V.17

Affiliation:

1. Department of Translational Hematology and Oncology Research, Taussig Cancer Institute, Cleveland Clinic, Cleveland, OH;

2. Department of Clinical Pathology, Cleveland Clinic, Cleveland, OH;

3. Department of Molecular Genetics, Lerner Research Institute, Cleveland Clinic, Cleveland, OH;

4. Department of Quantitative Health Sciences, Cleveland Clinic, Cleveland, OH;

5. Hematology and Hemotherapy Center, National Institute of Blood, School of Medical Sciences, University of Campinas, Campinas, São Paulo, Brazil;

6. Department of Anatomic Pathology, Cleveland Clinic, Cleveland, OH;

7. Department of Hematologic Oncology and Blood Disorders, Taussig Cancer Institute, Cleveland Clinic, Cleveland, OH;

8. RIKEN Research Center for Allergy and Immunology, Yokohama, Japan; and

9. Department of Chemistry, University of Pittsburgh, Pittsburgh, PA

Abstract

AbstractWhole 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.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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