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Novel mutations in the GJC2 gene associated with Pelizaeus-Merzbacher-like disease
Marta Owczarek-Lipska1,2, Lejla Mulahasanovic3,4, Carolin D Obermaier3,4
1Human Genetics, Faculty of Medicine and Health Sciences, University of Oldenburg, Ammerländer Heerstr. 114-118, 26129, Oldenburg, Germany.
Abstract:
Inherited white matter disorders of the central nervous system frequently are degenerative and progressive clinical entities. They are classified into myelin disorders, including hypomyelination, dysmyelination, demyelination, and myelin vacuolization, but also astrocytopathies, leuko-axonopathies, microgliopathies, and leuko-vasculopathies. Hypomyelinating leukodystrophy is the main feature of Pelizaeus-Merzbacher disease (PMD) and Pelizaeus-Merzbacher-like disease (PMLD1). PMD- and PMLD1-affected patients display comparable neurological symptoms, including psychomotor developmental delay, spasticity, nystagmus, impairment of cognitive skills, sensorineural hearing loss, and different ophthalmological disabilities. While clinical features overlap, PMD and PMLD1 can be distinguished on the molecular genetic level. PMD is caused by mutations in the gene encoding for the proteolipid protein 1 (PLP1), whereas PMLD1 is associated with mutations in the gene encoding for the gap junction protein gamma 2 (GJC2). Here we present novel compound-heterozygous mutations in the GJC2 gene identified in two, unrelated infantile patients affected with PMLD1. The heterozygous frameshift mutations c.392dupC, p.H132Afs*6 and c.989delC, p.P330Rfs*141 were found in the first patient. The heterozygous nonsense variant c.291C>G, p.Y97*, as well as the heterozygous missense variant c.716T>C, p.V239A were detected in the second patient. All four variants were predicted to be damaging for structure and/or function of the GJC2 protein. Combinations of these genetic variants likely are pathogenic and resulted in the PMLD1-phenotype in the investigated children. In conclusion, our clinical and molecular findings confirmed the genotype-phenotype relationship between mutations in the GJC2 and PMLD1. The novel mutations of GJC2 described herein will help to further understand the pathogenic mechanism underlying PMLD1.
Insights
This study identifies novel GJC2 gene mutations in two infants with Pelizaeus-Merzbacher-like disease (PMLD1), confirming the link between GJC2 mutations and this inherited white matter disorder.
Area of Science:
- Neurogenetics
- Molecular Neurology
- Developmental Neuroscience
Background:
- Inherited white matter disorders, including Pelizaeus-Merzbacher disease (PMD) and Pelizaeus-Merzbacher-like disease (PMLD1), are progressive central nervous system conditions.
- PMD is linked to PLP1 gene mutations, while PMLD1 is associated with GJC2 gene mutations, though clinical symptoms often overlap.
- Both PMD and PMLD1 present with significant neurological deficits, including developmental delay, spasticity, and sensory impairments.
Observation:
- This research details two unrelated infants diagnosed with PMLD1.
- Novel compound-heterozygous mutations in the GJC2 gene were identified in both patients.
- Specific mutations include frameshift variants (c.392dupC, p.H132Afs*6; c.989delC, p.P330Rfs*141) and a nonsense variant (c.291C>G, p.Y97*) alongside a missense variant (c.716T>C, p.V239A).
Findings:
- All identified GJC2 variants were predicted to be detrimental to protein structure and function.
- The combination of these genetic variants in the affected infants is considered pathogenic, leading to the PMLD1 phenotype.
- The study reinforces the established genotype-phenotype correlation between GJC2 mutations and PMLD1.
Implications:
- These findings expand the known spectrum of GJC2 mutations associated with PMLD1.
- Understanding these novel mutations aids in deciphering the pathogenic mechanisms underlying PMLD1.
- Accurate genetic diagnosis is crucial for understanding and potentially managing this rare leukodystrophy.
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