A pathogenic UFSP2 variant in an autosomal recessive form of pediatric neurodevelopmental anomalies and epilepsy

Min Ni1,2, Bushra Afroze3, Chao Xing4,5,6

  • 1Children's Medical Center Research Institute, UT Southwestern Medical Center, Dallas, TX, USA. min.ni@utsouthwestern.edu.

Abstract

Insights

A rare genetic variant in the UFSP2 gene causes neurodevelopmental delay and epilepsy in children. This variant impairs protein de-UFMylation, leading to a severe neurodevelopmental syndrome.

Area of Science:

  • Genetics
  • Neuroscience
  • Biochemistry

Background:

  • Neurodevelopmental disabilities are common and genetically diverse.
  • The UFMylation pathway is crucial for protein modification.
  • UFSP2 variants are linked to skeletal dysplasias, but not previously to neurodevelopmental disorders.

Purpose of the Study:

  • To investigate a homozygous UFSP2 variant identified in families with neurodevelopmental delay and epilepsy.
  • To understand the functional consequences of this UFSP2 variant on the UFMylation pathway.
  • To correlate genotype with the observed clinical phenotype.

Main Methods:

  • Whole exome sequencing to identify pathogenic variants and homozygosity.
  • Immunoblotting of patient-derived fibroblasts to assess protein levels and modifications.
  • Structural analysis of UFSP2 to understand variant localization.

Main Results:

  • A rare homozygous variant (c.344T>A; p.V115E) in UFSP2 was identified in eight children from four families.
  • Fibroblast analysis showed reduced UFSP2 and increased UFMylated targets, suggesting impaired de-UFMylation.
  • The V115E variant is located in an N-terminal domain, distinct from catalytic sites seen in skeletal dysplasia variants.

Conclusions:

  • Homozygosity for the UFSP2 V115E variant causes a severe syndrome of neurodevelopmental disability and epilepsy.
  • The specific variant impacts UFSP2's de-UFMylation function, leading to distinct clinical outcomes compared to other UFSP2-related skeletal disorders.

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