Aug 2026· Brain & development (Tokyo. 1979)· Vol 48 5, pp.
104584
· 0 citations· 45 references
Medicine
TL;DR
This study identified compound heterozygous GBA1 variants, including two novel candidate pathogenic splice site variants, in Gaucher disease type 3 patients, expanding the known mutational spectrum.
Abstract
Background
Variants in GBA1 are associated with neurodegenerative disease. This study aimed to explore pathogenic GBA1 variants.
Methods
Four patients with progressive myoclonic epilepsy (PME) and extremely low β-glucosidase levels were recruited. Whole-exome sequencing and long-range PCR were performed to identify GBA1 variants. Bioinformatic analyses were used to predict the impact of the identified variants. A literature review was performed to explore the genotype-phenotype correlations. GBA1 expression data across different brain regions and developmental stages were analyzed using the BrainSpan database. RT-PCR was performed to verify the splicing effects.
Results
Compound heterozygous GBA1 variants were identified in four patients. Five distinct variants were detected, including two novel splice site variants (c.308-2A>G and c.762-2A>C) and three previously reported variants. All identified variants were rare or absent in gnomAD. Splice site variants c.308-2A>G and c.762-2A>C were predicted to cause aberrant splicing. Minigene-based splicing assays coupled with RT-PCR and Sanger sequencing confirmed that both variants cause complete exon skipping (exon 4 and exon 7, respectively). All patients presented with PME onset in childhood/adolescence, intellectual regression, low β-glucosidase, and diffuse brain atrophy and were subsequently diagnosed with Gaucher disease type 3. GBA1 expression in the brain showed two distinct peaks: one in infancy and another after five years of age. The onset age of PME aligned with the second GBA1 expression peak (after five years of age).
Conclusion
This study identified compound heterozygous GBA1 variants, including two novel candidate pathogenic splice site variants, in Gaucher disease type 3 patients, expanding the known mutational spectrum.
It is demonstrated that early-onset MORC2-associated disorders segregate into two principal neurological phenotypes: a predominantly neuromuscular form and a central nervous system-predominant form.
A. Murtazina, Eugenii Tatarsky, I. Viakhireva et al.· Journal of Medical Genetics· 0 citations
The findings support a possible domain‐related genotype–phenotype association for the role of ALG13 in neurodevelopmental disorders and provide additional developmental context for the role of ALG13 in neurodevelopmental disorders.
Song Su, Wandong Hu, Ying Ren et al.· Human Mutation· 0 citations
PURPOSE
The HIVEP3 gene encodes a zinc finger protein that regulates nuclear factor κB-mediated transcription and plays an essential role in neurodevelopment. Its association with human disease remains elusive.
METHODS
Trio-based whole-exome sequencing was performed in patients with unexplained epilepsy. Genotype-phe...
Wei Wei, Wen-Jie Wang, Xuan Guo et al.· Seizure· 0 citations
BACKGROUND
While truncating variants in the SEMA6B gene are an established cause of Progressive Myoclonus Epilepsy-1(EPM11), the pathogenic mechanisms of non-last-exon splicing variants, particularly those underlying the frequent yet elusive phenomenon of incomplete penetrance, remain a critical knowledge gap. Elucidat...
Shu-Yao Zhu, Jin Wang, Ze-Min Luo et al.· Seizure· 0 citations
CACNA1C is potentially a candidate causative gene of focal epilepsy and the genotype-phenotype correlation of CACNA1C helps explain phenotypic heterogeneity.
Yan-Fang Li, Pei Mo, Lan-Zhen Zhang et al.· Journal of Medical Genetics· 0 citations
Background: ABCA4 variants are the primary cause of Stargardt disease and also contribute to other inherited retinal disorders. Despite this central role, nearly half of all ABCA4 missense variants remain classified as variants of uncertain significance (VUS), limiting genetic diagnosis for many patients. The extracyto...
Jazzlyn S. Jones, Barry Bodt, Subhasis B. Biswas et al.· Research Square· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.