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Published on: June 6, 2025
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.
Purpose:
Neurodevelopmental disabilities are common and genetically heterogeneous. We identified a homozygous variant in the gene encoding UFM1-specific peptidase 2 (UFSP2), which participates in the UFMylation pathway of protein modification. UFSP2 variants are implicated in autosomal dominant skeletal dysplasias, but not neurodevelopmental disorders. Homozygosity for the variant occurred in eight children from four South Asian families with neurodevelopmental delay and epilepsy. We describe the clinical consequences of this variant and its effect on UFMylation.
Methods:
Exome sequencing was used to detect potentially pathogenic variants and identify shared regions of homozygosity. Immunoblotting assessed protein expression and post-translational modifications in patient-derived fibroblasts.
Results:
The variant (c.344T>A; p.V115E) is rare and alters a conserved residue in UFSP2. Immunoblotting in patient-derived fibroblasts revealed reduced UFSP2 abundance and increased abundance of UFMylated targets, indicating the variant may impair de-UFMylation rather than UFMylation. Reconstituting patient-derived fibroblasts with wild-type UFSP2 reduced UFMylation marks. Analysis of UFSP2's structure indicated that variants observed in skeletal disorders localize to the catalytic domain, whereas V115 resides in an N-terminal domain possibly involved in substrate binding.
Conclusion:
Different UFSP2 variants cause markedly different diseases, with homozygosity for V115E causing a severe syndrome of neurodevelopmental disability and epilepsy.
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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