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Published on: August 15, 2019
Biallelic Mutations of VAC14 in Pediatric-Onset Neurological Disease
Guy M Lenk1, Krystyna Szymanska2, Grazyna Debska-Vielhaber3
1Department of Human Genetics, University of Michigan, Ann Arbor, MI 48109-5618, USA.
Abstract:
In the PI(3,5)P2 biosynthetic complex, the lipid kinase PIKFYVE and the phosphatase FIG4 are bound to the dimeric scaffold protein VAC14, which is composed of multiple heat-repeat domains. Mutations of FIG4 result in the inherited disorders Charcot-Marie-Tooth disease type 4J, Yunis-Varón syndrome, and polymicrogyria with seizures. We here describe inherited variants of VAC14 in two unrelated children with sudden onset of a progressive neurological disorder and regression of developmental milestones. Both children developed impaired movement with dystonia, became nonambulatory and nonverbal, and exhibited striatal abnormalities on MRI. A diagnosis of Leigh syndrome was rejected due to normal lactate profiles. Exome sequencing identified biallelic variants of VAC14 that were inherited from unaffected heterozygous parents in both families. Proband 1 inherited a splice-site variant that results in skipping of exon 13, p.Ile459Profs(∗)4 (not reported in public databases), and the missense variant p.Trp424Leu (reported in the ExAC database in a single heterozygote). Proband 2 inherited two missense variants in the dimerization domain of VAC14, p.Ala582Ser and p.Ser583Leu, that have not been previously reported. Cultured skin fibroblasts exhibited the accumulation of vacuoles that is characteristic of PI(3,5)P2 deficiency. Vacuolization of fibroblasts was rescued by transfection of wild-type VAC14 cDNA. The similar age of onset and neurological decline in the two unrelated children define a recessive disorder resulting from compound heterozygosity for deleterious variants of VAC14.
Insights
New genetic variants in the VAC14 gene cause a severe, recessive neurological disorder. This condition leads to developmental regression and movement impairment in affected children.
Area of Science:
- Genetics
- Neuroscience
- Molecular Biology
Background:
- The PI(3,5)P2 biosynthetic complex involves PIKFYVE, FIG4, and the scaffold protein VAC14.
- Mutations in FIG4 are linked to inherited neurological disorders like Charcot-Marie-Tooth disease type 4J.
Observation:
- Two unrelated children presented with sudden onset of progressive neurological decline, developmental regression, dystonia, and striatal abnormalities.
- Leigh syndrome was excluded due to normal lactate levels.
Findings:
- Exome sequencing revealed biallelic, inherited variants in the VAC14 gene in both children.
- These VAC14 variants led to vacuolization in cultured skin fibroblasts, characteristic of PI(3,5)P2 deficiency.
- Fibroblast vacuolization was rescued by wild-type VAC14 cDNA, confirming the variants' pathogenicity.
Implications:
- Identifies novel, deleterious variants in VAC14 as causative for a distinct recessive neurodevelopmental disorder.
- Highlights the critical role of VAC14 in neurological function and development.
- Provides a basis for understanding the molecular mechanisms underlying VAC14-associated neurological diseases.
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