Přehled o publikaci
2024
The non-canonical BAF chromatin remodeling complex is a novel target of spliceosome dysregulation in SF3B1-mutated chronic lymphocytic leukemia
HAGERSTRAND, Daniel; Blaz ODER; Diego CORTESE; Ying QU; Amrei BINZER-PANCHAL et al.Basic information
Original name
The non-canonical BAF chromatin remodeling complex is a novel target of spliceosome dysregulation in SF3B1-mutated chronic lymphocytic leukemia
Authors
HAGERSTRAND, Daniel; Blaz ODER; Diego CORTESE; Ying QU; Amrei BINZER-PANCHAL; Cecilia OSTERHOLM; Teresa Del Peso SANTOS; Leily RABBANI; Hassan Foroughi ASL; Aron SKAFTASON; Viktor LJUNGSTROM; August LUNDHOLM; Maria KOUTROUMANI; Zahra HAIDER; Cecilia JYLHA; John MOLLSTEDT; Larry MANSOURI; Karla PLEVOVÁ; Andreas AGATHANGELIDIS; Lydia SCARFO; Marine ARMAND; Alice F MUGGEN; Neil E KAY; Tait SHANAFELT; Davide ROSSI; Lukas M ORRE; Šárka POSPÍŠILOVÁ; Konstantin BARYLYUK; Frederic DAVI; Mattias VESTERLUND; Anton W LANGERAK; Janne LEHTIO; Paolo GHIA; Kostas STAMATOPOULOS; Lesley-Ann SUTTON and Richard ROSENQUIST
Edition
Leukemia, London, Nature Publishing Group, 2024, 0887-6924
Other information
Language
English
Type of outcome
Article in a journal
Country of publisher
United Kingdom of Great Britain and Northern Ireland
Confidentiality degree
is not subject to a state or trade secret
References:
Marked to be transferred to RIV
Yes
RIV identification code
RIV/00216224:14110/24:00137474
Organization
Lékařská fakulta – Repository – Repository
UT WoS
EID Scopus
Keywords in English
SF3B1 mutation; Chronic lymphocytic leukemia; Chromatin remodeling complex; Spliceosome dysregulation; Non-canonical BAF complex
Links
LX22NPO5102, research and development project. NU21-08-00237, research and development project.
Changed: 23/4/2025 00:50, RNDr. Daniel Jakubík
Abstract
In the original language
SF3B1 mutations are recurrent in chronic lymphocytic leukemia (CLL), particularly enriched in clinically aggressive stereotyped subset #2. To investigate their impact, we conducted RNA-sequencing of 18 SF3B1(MUT) and 17 SF3B1(WT) subset #2 cases and identified 80 significant alternative splicing events (ASEs). Notable ASEs concerned exon inclusion in the non-canonical BAF (ncBAF) chromatin remodeling complex subunit, BRD9, and splice variants in eight additional ncBAF complex interactors. Long-read RNA-sequencing confirmed the presence of splice variants, and extended analysis of 139 CLL cases corroborated their association with SF3B1 mutations. Overexpression of SF3B1(K700E) induced exon inclusion in BRD9, resulting in a novel splice isoform with an alternative C-terminus. Protein interactome analysis of the BRD9 splice isoform revealed augmented ncBAF complex interaction, while exhibiting decreased binding of auxiliary proteins, including SPEN, BRCA2, and CHD9. Additionally, integrative multi-omics analysis identified a ncBAF complex-bound gene quartet on chromosome 1 with higher expression levels and more accessible chromatin in SF3B1(MUT) CLL. Finally, Cancer Dependency Map analysis and BRD9 inhibition displayed BRD9 dependency and sensitivity in cell lines and primary CLL cells. In conclusion, spliceosome dysregulation caused by SF3B1 mutations leads to multiple ASEs and an altered ncBAF complex interactome, highlighting a novel pathobiological mechanism in SF3B1(MUT) CLL.