Elucidating the clinical and molecular spectrum of SMARCC2-associated NDD in a cohort of 65 affected individuals
Bosch, E.; Popp, B.; Guese, E.; Skinner, C.; van der Sluijs, P. J.; Maystadt, I.; Pinto, A. M.; Renieri, A.; Bruno, L. P.; Granata, S.; Marcelis, C.; Baysal, O.; Hartwich, D.; HolthOefer, L.; Isidor, B.; Cogne, B.; Wieczorek, D.; Capra, V.; Scala, M.; De Marco, P.; Ognibene, M.; Abou Jamra, R.; Platzer, K.; Carter, L. B.; Kuismin, O.; van Haeringen, A.; Maroofian, R.; Valenzuela, I.; Cusco, I.; Martinez-Agosto, J. A.; Rabani, A. M.; Mefford, H. C.; Pereira, ; Close, C.; Anyane-Yeboa, K.; Wagner, M.; Hannibal, M. C.; Zacher, P.; Thiffault, I.; Beunders, G.; Umair, M.; Bhola, P. T.; McGinnis, E
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PURPOSECoffin-Siris and Nicolaides-Baraitser syndromes, are recognisable neurodevelopmental disorders caused by germline variants in BAF complex subunits. The SMARCC2 BAFopathy was recently reported. Herein, we present clinical and molecular data on a large cohort. METHODSClinical symptoms for 41 novel and 24 previously published cases were analyzed using the Human Phenotype Ontology. For genotype-phenotype correlation, molecular data were standardized and grouped into non-truncating and likely gene-disrupting variants (LGD). Missense variant protein expression and BAF subunit interactions were examined using 3D protein modeling, co-immunoprecipitation, and proximity-ligation assays. RESULTSNeurodevelopmental delay with intellectual disability, muscular hypotonia and behavioral disorders were the major manifestations. Clinical hallmarks of BAFopathies were rare. Clinical presentation differed significantly, with LGD variants being predominantly inherited and associated with mildly reduced or normal cognitive development, while non-truncating variants were mostly de novo and presented with severe developmental delay. These distinct manifestations and non-truncating variant clustering in functional domains suggest different pathomechanisms. In vitro testing showed decreased protein expression for N-terminal missense variants similar to LGD. CONCLUSIONThis study improved SMARCC2 variant classification and identified discernible SMARCC2-associated phenotypes for LGD and non-truncating variants, which were distinct from other BAFopathies. The pathomechanism of most non-truncating variants has yet to be investigated.
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