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April 1, 2026Nature Genetics4 citationsOpen Access

Systematic analysis of snRNA genes reveals frequent RNU2-2 variants in dominant and recessive developmental and epileptic encephalopathies

ELElsa LeitãoASAmandine SantiniBCBenjamin Cogne

Key Points

  • The study aims to systematically analyze snRNA genes, focusing on RNU2-2 variants and their association with neurodevelopmental disorders.
  • Analyzed 200 snRNA genes in a cohort of 34,329 individuals with rare disorders
  • Documented the frequency of RNU2-2 variants and their clinical impact
  • Utilized blood transcriptomics and DNA methylation analysis to explore variant effects
  • Identified RNU2-2 variants in 141 individuals, with variations linked to both dominant and recessive forms of neurodevelopmental disorders
  • Recessive RNU2-2 NDDs occur at least twice as frequently as dominant forms
  • Highlighted overlapping clinical features, particularly the prevalence of epilepsy in affected individuals

Abstract

Abstract Small nuclear RNAs (snRNAs) are essential components of the spliceosome. De novo variants in snRNA genes RNU4-2 (ReNU syndrome), RNU5B-1 and RNU2-2 have been linked to dominant neurodevelopmental disorders (NDDs), revealing a large unexpected contribution of noncoding RNA genes to genetic diseases. Here, through international collaborations, we analyze systematically 200 potentially functional snRNA genes in a French cohort of 34,329 people with rare disorders. We report RNU2-2 variants in 141 individuals, including 35 with recurrent dominant pathogenic variants and 91 affected members from 73 families with biallelic variants. Recessive RNU2-2 NDD is at least twice as frequent as the dominant form and often involves a de novo variant in trans with an inherited allele, consistent with the high mutability of snRNA genes. Dominant and recessive RNU2-2 NDDs share overlapping clinical features, with frequent epilepsy. Blood transcriptomics and DNA methylation analyses revealed subtle, variant-specific effects on splicing and episignatures. Our results support a gradient-of-impact model bridging dominant and recessive inheritance, and establish RNU2-2 variants as a principal contributor to NDDs, nearly as prevalent as ReNU syndrome.

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Cite This Study

Leitão et al. (2026) studied this question.

synapsesocial.com/papers/69ccb63f16edfba7beb87edehttps://doi.org/10.1038/s41588-026-02547-5
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