Publication:
A homozygous UBA5 pathogenic variant causes a fatal congenital neuropathy.

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2020-11-24

Authors

Cabrera-Serrano, Macarena
Coote, David Joseph
Azmanov, Dimitar
Goullee, Hayley
Andersen, Erik
McLean, Catriona
Davis, Mark
Ishimura, Ryosuke
Stark, Zornitza
Jean-Michel, Vallat

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BMJ Group
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Abstract

UBA5 is the activating enzyme of UFM1 in the ufmylation post-translational modification system. Different neurological phenotypes have been associated with UBA5 pathogenic variants including epilepsy, intellectual disability, movement disorders and ataxia. We describe a large multigenerational consanguineous family presenting with a severe congenital neuropathy causing early death in infancy. Whole exome sequencing and linkage analysis identified a novel homozygous UBA5 NM_024818.3 c.31C>T (p.Arg11Trp) mutation. Protein expression assays in mouse tissue showed similar levels of UBA5 in peripheral nerves to the central nervous system. CRISPR-Cas9 edited HEK (human embrionic kidney) cells homozygous for the UBA5 p.Arg11Trp mutation showed reduced levels of UBA5 protein compared with the wild-type. The mutant p.Arg11Trp UBA5 protein shows reduced ability to activate UFM1. This report expands the phenotypical spectrum of UBA5 mutations to include fatal peripheral neuropathy.

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MeSH Terms

Ataxia
CRISPR-Cas Systems
Central Nervous System
Consanguinity
Epilepsy
Female
Gene Expression Regulation
Genetic Linkage
HEK293 Cells
Homozygote
Humans
Infant
Intellectual Disability
Male
Movement Disorders
Mutation
Nervous System Malformations
Pedigree
Peripheral Nerves
Proteins
Ubiquitin-Activating Enzymes

DeCS Terms

Mutación
Proteínas
Secuenciación del Exoma
Trastornos del movimiento
Muerte
Epilepsia
Discapacidad intelectual
Enzimas
Riñón
Ataxia

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Keywords

UBA5, peripheral nerve disease, rare disease, ufmylation

Citation

Cabrera-Serrano M, Coote DJ, Azmanov D, Goullee H, Andersen E, McLean C, et al. A homozygous UBA5 pathogenic variant causes a fatal congenital neuropathy. J Med Genet. 2020 Dec;57(12):835-842.