A novel SMARCC1 BAFopathy implicates neural progenitor epigenetic dysregulation in human hydrocephalus

Amrita K Singh1,2, Garrett Allington1,2,3, Stephen Viviano4

  • 1Department of Neurosurgery, Yale University, New Haven, CT 06510, USA.

PubMed

Insights

Genetic variants in SMARCC1 cause a novel syndrome, SMARCC1-associated developmental dysgenesis syndrome, characterized by hydrocephalus and developmental delays. This finding highlights SMARCC1

Area of Science:

  • Genetics
  • Developmental Biology
  • Neuroscience

Background:

  • Hydrocephalus is the most common pediatric brain surgery indication.
  • SMARCC1, a component of the BRG1-associated factor (BAF) chromatin remodelling complex, is a candidate gene for congenital hydrocephalus.
  • Systematic examination of SMARCC1 variants in large cohorts and in vivo functional validation were lacking.

Purpose of the Study:

  • To assess SMARCC1 variant prevalence in a large patient cohort with congenital hydrocephalus.
  • To describe the clinical and radiographic phenotypes associated with SMARCC1 variants.
  • To functionally validate the impact of Smarcc1 depletion in a novel Xenopus tropicalis model.

Main Methods:

  • Whole-exome sequencing of 2697 ventriculomegalic trios and 1798 control exomes.
  • Genetic association analysis, enrichment, and protein structure impact assessment of identified variants.
  • RNA-sequencing of human fetal brain and Xenopus knockdowns using optical coherence tomography, in situ hybridization, and immunofluorescence.

Main Results:

  • Six rare, de novo SMARCC1 variants were identified in conserved functional domains.
  • Patients presented with hydrocephalus, aqueductal stenosis, corpus callosum abnormalities, developmental delay, and cardiac defects.
  • Xenopus knockdowns recapitulated key phenotypes and were rescued by wild-type SMARCC1.

Conclusions:

  • De novo SMARCC1 variants cause a novel BAFopathy, 'SMARCC1-associated developmental dysgenesis syndrome'.
  • This syndrome is characterized by ventriculomegaly, aqueductal stenosis, developmental delay, and structural defects.
  • SMARCC1 is crucial for human brain morphogenesis, and its variants provide insights into congenital hydrocephalus pathogenesis.