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Abstract

SF3B1 is the most commonly mutated RNA splicing factor in cancer1-4, but the mechanisms by which SF3B1 mutations promote malignancy are poorly understood. Here we integrated pan-cancer splicing analyses with a positive-enrichment CRISPR screen to prioritize splicing alterations that promote tumorigenesis. We report that diverse SF3B1 mutations converge on repression of BRD9, which is a core component of the recently described non-canonical BAF chromatin-remodelling complex that also contains GLTSCR1 and GLTSCR1L5-7. Mutant SF3B1 recognizes an aberrant, deep intronic branchpoint within BRD9 and thereby induces the inclusion of a poison exon that is derived from an endogenous retroviral element and subsequent degradation of BRD9 mRNA. Depletion of BRD9 causes the loss of non-canonical BAF at CTCF-associated loci and promotes melanomagenesis. BRD9 is a potent tumour suppressor in uveal melanoma, such that correcting mis-splicing of BRD9 in SF3B1-mutant cells using antisense oligonucleotides or CRISPR-directed mutagenesis suppresses tumour growth. Our results implicate the disruption of non-canonical BAF in the diverse cancer types that carry SF3B1 mutations and suggest a mechanism-based therapeutic approach for treating these malignancies.

Details

Title
Spliceosomal disruption of the non-canonical BAF complex in cancer
Author
Inoue, Daichi 1 ; Chew, Guo-Liang 2 ; Liu, Bo 1 ; Michel, Brittany C 3 ; Pangallo, Joseph 2 ; D'Avino, Andrew R; Hitchman, Tyler; North, Khrystyna; Lee, Stanley Chun-Wei; Bitner, Lillian; Block, Ariele; Moore, Amanda R; Yoshimi, Akihide; Escobar-Hoyos, Luisa; Cho, Hana; Penson, Alex; Lu, Sydney X; Taylor, Justin; Chen, Yu; Kadoch, Cigall; Abdel-Wahab, Omar; Bradley, Robert K

 Human Oncology and Pathogenesis Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA 
 Computational Biology Program, Public Health Sciences Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA 
 Department of Pediatric Oncology, Dana-Farber Cancer Institute, Boston, MA, USA 
Pages
432-436,436A-436Y
Section
LETTER
Publication year
2019
Publication date
Oct 17, 2019
Publisher
Nature Publishing Group
ISSN
00280836
e-ISSN
14764687
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2307812851
Copyright
Copyright Nature Publishing Group Oct 17, 2019