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L. Vissers

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Open access Aug 2026

Maturation-dependent splicing alterations constrain SYNGAP1 splice-switching therapy

Haploinsufficiency in SYNGAP1 causes a severe neurodevelopmental syndrome. SYNGAP1 protein is mainly detected in neuronal synapses. However, SYNGAP1 RNA is more widely expressed and strongly regulated via alternative splicing: alternative 3’ splice site (A3SS) inclusion leads to non-productive transcripts that are degraded through nonsense-mediated decay. Recently, splice-switching oligonucleotides (SSOs) that redirect SYNGAP1 splicing to increase SYNGAP1 protein levels were developed. However, we hypothesized that during neuronal maturation, non-productive splicing may decrease to enhance functional transcripts in mature neurons. This would reduce the abundance of the SSO target transcript, limiting the potential for SSO treatment to increase neuronal SYNGAP1 expression. Using neural differentiation of human induced pluripotent stem cells, we show that the A3SS transcript is abundant in neural progenitors, astrocytes, microglia and immature neurons, with minimal presence in mature neurons. These data imply that SSOs targeting A3SS might lack therapeutic efficacy to rescue the neuronal phenotypes associated with SYNGAP1 haploinsufficiency. Graphical abstract

J. A. Kamp, K. N. Wijnant, N. Maas et al. · 0 citations
Open access Aug 2026

Genome sequencing reveals high diagnostic yield in children with severe sporadic developmental language disorder.

A high prevalence of rare (mainly de novo) genetic variants in individuals with severe and sporadic DLD is revealed, and extensive molecular overlap with other neurodevelopmental disorders is demonstrated.

Milou G. P. Kennis, Leenke van Haaften, Karen van Hulst et al. · 0 citations
Open access Jul 2026

NKX2-1 Downstream Regulatory Structural Variants Explain a Substantial Proportion of Molecular Diagnoses in Patients With Benign Hereditary Chorea.

Downstream regulatory variants are a substantial cause of NKX2-1-RDs and diagnostic strategies should include this regulatory region and systematic structural variant detection, particularly when coding variants have been excluded.

Robin Wijngaard, Lucy Dougherty-de Miguel, G. Demidov et al. · 0 citations

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