Mutations in the spliceosome machinery, a novel and ubiquitous pathway in leukemogenesis

Author:

Makishima Hideki1,Visconte Valeria1,Sakaguchi Hirotoshi2,Jankowska Anna M.1,Abu Kar Sarah1,Jerez Andres1,Przychodzen Bartlomiej1,Bupathi Manoj1,Guinta Kathryn1,Afable Manuel G.1,Sekeres Mikkael A.1,Padgett Richard A.3,Tiu Ramon V.1,Maciejewski Jaroslaw P.1

Affiliation:

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

2. Department of Pediatrics, Nagoya University Graduate School of Medicine, Nagoya, Japan; and

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

Abstract

Abstract Myelodysplastic syndromes (MDSs) are chronic and often progressive myeloid neoplasms associated with remarkable heterogeneity in the histomorphology and clinical course. Various somatic mutations are involved in the pathogenesis of MDS. Recently, mutations in a gene encoding a spliceosomal protein, SF3B1, were discovered in a distinct form of MDS with ring sideroblasts. Whole exome sequencing of 15 patients with myeloid neoplasms was performed, and somatic mutations in spliceosomal genes were identified. Sanger sequencing of 310 patients was performed to assess phenotype/genotype associations. To determine the functional effect of spliceosomal mutations, we evaluated pre-mRNA splicing profiles by RNA deep sequencing. We identified additional somatic mutations in spliceosomal genes, including SF3B1, U2AF1, and SRSF2. These mutations alter pre-mRNA splicing patterns. SF3B1 mutations are prevalent in low-risk MDS with ring sideroblasts, whereas U2AF1 and SRSF2 mutations are frequent in chronic myelomonocytic leukemia and advanced forms of MDS. SF3B1 mutations are associated with a favorable prognosis, whereas U2AF1 and SRSF2 mutations are predictive for shorter survival. Mutations affecting spliceosomal genes that result in defective splicing are a new leukemogenic pathway. Spliceosomal genes are probably tumor suppressors, and their mutations may constitute diagnostic biomarkers that could potentially serve as therapeutic targets.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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