TY - JOUR
T1 - De novo heterozygous variants of the RSF1 gene are responsible for a syndromic neurodevelopmental disorder
AU - Undiagnosed Diseases Network
AU - Jost, Céline
AU - Busa, Tiffany
AU - Wegner, Daniel
AU - Shinawi, Marwan
AU - Schaefer, Elise
AU - Piton, Amélie
AU - Schluth-Bolard, Caroline
AU - Charles, Perrine
AU - Keren, Boris
AU - Mayerhanser, Katharina
AU - Brunet, Theresa
AU - Schatz, Ulrich
AU - Neil, Jennifer E.
AU - Walsh, Christopher A.
AU - Sisco, Kathleen
AU - J. Paul, Alexander
AU - Lee, Chung
AU - Dykzeul, Natalie
AU - Bonner, Devon
AU - Bernstein, Jonathan A.
AU - Sutcliffe, Erin
AU - Wentzensen, Ingrid M.
AU - Froehlich, Catherine
AU - Liebler, Kaleigh
AU - Galvin Parton, Patricia
AU - Weiss-Burns, Jody
AU - Sagnol, Chloé
AU - Delanne, Julian
AU - Racine, Caroline
AU - Thauvin-Robinet, Christel
AU - Safraou, Hana
AU - Tran Mau-Them, Frédéric
AU - Duffourd, Yannis
AU - Bruel, Ange Line
AU - Faivre, Laurence
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/4
Y1 - 2026/4
N2 - Neurodevelopmental disorders (NDD) are a wide and heterogenous group of conditions due to impaired brain development, orchestrated by the crosstalk between genome and environment. Dynamic chromatin regulation during cortical development is fundamental, and chromatin remodelers are critical determinants of this process. Recently, numerous chromatin remodeling genes have been implicated in NDDs. By altering genes’ epigenetic state, mutated chromatin remodelers disrupt the spatiotemporal regulation of gene expression during development, potentially leading to severe consequences. The Remodeling and Spacing Factor 1 (RSF1) gene encodes a ubiquitous nuclear protein involved in chromatin remodeling, crucial for processes such as DNA transcription, replication, and repair. In this study, we identified by gene matching (n = 7) and literature search (n = 4) eleven unrelated individuals harboring de novo or inherited from a symptomatic parent heterozygous variants in RSF1. All individuals had an NDD, whether intellectual disability, autism spectrum disorder or developmental delay. From the seven individuals with detailed clinical information, unspecific and inconsistent associated features were described, including cranio-facial morphological features, musculoskeletal, digestive, vision, tone, epilepsy and brain MRI anomalies. Our data support the hypothesis that RSF1 is important for brain development and a novel candidate gene for syndromic NDDs.
AB - Neurodevelopmental disorders (NDD) are a wide and heterogenous group of conditions due to impaired brain development, orchestrated by the crosstalk between genome and environment. Dynamic chromatin regulation during cortical development is fundamental, and chromatin remodelers are critical determinants of this process. Recently, numerous chromatin remodeling genes have been implicated in NDDs. By altering genes’ epigenetic state, mutated chromatin remodelers disrupt the spatiotemporal regulation of gene expression during development, potentially leading to severe consequences. The Remodeling and Spacing Factor 1 (RSF1) gene encodes a ubiquitous nuclear protein involved in chromatin remodeling, crucial for processes such as DNA transcription, replication, and repair. In this study, we identified by gene matching (n = 7) and literature search (n = 4) eleven unrelated individuals harboring de novo or inherited from a symptomatic parent heterozygous variants in RSF1. All individuals had an NDD, whether intellectual disability, autism spectrum disorder or developmental delay. From the seven individuals with detailed clinical information, unspecific and inconsistent associated features were described, including cranio-facial morphological features, musculoskeletal, digestive, vision, tone, epilepsy and brain MRI anomalies. Our data support the hypothesis that RSF1 is important for brain development and a novel candidate gene for syndromic NDDs.
UR - https://www.scopus.com/pages/publications/105029432864
U2 - 10.1038/s41431-026-02017-w
DO - 10.1038/s41431-026-02017-w
M3 - Article
C2 - 41606215
AN - SCOPUS:105029432864
SN - 1018-4813
VL - 34
SP - 554
EP - 564
JO - European Journal of Human Genetics
JF - European Journal of Human Genetics
IS - 4
ER -