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BICRA, a SWI/SNF Complex Member, Is Associated with BAF-Disorder Related Phenotypes in Humans and Model Organisms
Author(s) -
Scott Barish,
Tahsin Stefan Barakat,
Brittany C. Michel,
Nazar Mashtalir,
Jennifer B. Phillips,
Alfredo M. Valencia,
Berrak Uğur,
Jeremy Wegner,
Tiana M. Scott,
Brett Bostwick,
David R. Murdock,
Hongzheng Dai,
Elena Perenthaler,
Anita Nikoncuk,
Marjon van Slegtenhorst,
Alice S. Brooks,
Boris Keren,
Caroline Nava,
Cyril Mignot,
Jessica Douglas,
Lance H. Rodan,
C. Nowak,
Sian Ellard,
Karen Stals,
Sally Ann Lynch,
Marie Faoucher,
Gaëtan Lesca,
Patrick Edery,
Kendra Engleman,
Dihong Zhou,
Isabelle Thiffault,
John Herriges,
Jennifer Gass,
Raymond J. Louie,
Elliot Stolerman,
Camerun Washington,
Francesco Vetrini,
Aiko IwataOtsubo,
Victoria M. Pratt,
Erin Conboy,
Kayla Treat,
Nora Shan,
Jose A. Camacho,
Emma Wakeling,
Bo Yuan,
ChunAn Chen,
Jill A. Rosenfeld,
Monte Westerfield,
Michael F. Wangler,
Shinya Yamamoto,
Cigall Kadoch,
Daryl A. Scott,
Hugo J. Bellen
Publication year - 2020
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2020.11.003
Subject(s) - genetics , haploinsufficiency , biology , phenotype , swi/snf , zebrafish , loss function , chromatin remodeling , missense mutation , intellectual disability , gene , chromatin
SWI/SNF-related intellectual disability disorders (SSRIDDs) are rare neurodevelopmental disorders characterized by developmental disability, coarse facial features, and fifth digit/nail hypoplasia that are caused by pathogenic variants in genes that encode for members of the SWI/SNF (or BAF) family of chromatin remodeling complexes. We have identified 12 individuals with rare variants (10 loss-of-function, 2 missense) in the BICRA (BRD4 interacting chromatin remodeling complex-associated protein) gene, also known as GLTSCR1, which encodes a subunit of the non-canonical BAF (ncBAF) complex. These individuals exhibited neurodevelopmental phenotypes that include developmental delay, intellectual disability, autism spectrum disorder, and behavioral abnormalities as well as dysmorphic features. Notably, the majority of individuals lack the fifth digit/nail hypoplasia phenotype, a hallmark of most SSRIDDs. To confirm the role of BICRA in the development of these phenotypes, we performed functional characterization of the zebrafish and Drosophila orthologs of BICRA. In zebrafish, a mutation of bicra that mimics one of the loss-of-function variants leads to craniofacial defects possibly akin to the dysmorphic facial features seen in individuals harboring putatively pathogenic BICRA variants. We further show that Bicra physically binds to other non-canonical ncBAF complex members, including the BRD9/7 ortholog, CG7154, and is the defining member of the ncBAF complex in flies. Like other SWI/SNF complex members, loss of Bicra function in flies acts as a dominant enhancer of position effect variegation but in a more context-specific manner. We conclude that haploinsufficiency of BICRA leads to a unique SSRIDD in humans whose phenotypes overlap with those previously reported.

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