| Literature DB >> 33435586 |
Agnieszka Domin1, Tomasz Zabek2, Aleksandra Kwiatkowska3, Tomasz Szmatola2,4, Anna Deregowska5, Anna Lewinska5, Artur Mazur1, Maciej Wnuk5.
Abstract
Fucosidosis is a rare neurodegenerative autosomal recessive disorder, which manifests as progressive neurological and psychomotor deterioration, growth retardation, skin and skeletal abnormalities, intellectual disability and coarsening of facial features. It is caused by biallelic mutations in FUCA1 encoding the α-L-fucosidase enzyme, which in turn is responsible for degradation of fucose-containing glycoproteins and glycolipids. FUCA1 mutations lead to severe reduction or even loss of α-L-fucosidase enzyme activity. This results in incomplete breakdown of fucose-containing compounds leading to their deposition in different tissues and, consequently, disease progression. To date, 36 pathogenic variants in FUCA1 associated with fucosidosis have been documented. Among these are three splice site variants. Here, we report a novel fucosidosis-related 9-base-pair deletion (NG_013346.1:g.10233_10241delACAGGTAAG) affecting the exon 3/intron 3 junction within a FUCA1 sequence. This novel pathogenic variant was identified in a five-year-old Polish girl with a well-defined pattern of fucosidosis symptoms. Since it is postulated that other genetic, nongenetic or environmental factors can also contribute to fucosidosis pathogenesis, we performed further analysis and found two rare de novo chromosomal aberrations in the girl's genome involving a 15q11.1-11.2 microdeletion and an Xq22.2 gain. These abnormalities were associated with genome-wide changes in DNA methylation status in the epigenome of blood cells.Entities:
Keywords: 15q11.1-11-2 microdeletion; DNA methylation; FUCA1 mutation; Xq22.2 gain; fucosidosis; rare chromosomal aberrations
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Year: 2021 PMID: 33435586 PMCID: PMC7827884 DOI: 10.3390/genes12010074
Source DB: PubMed Journal: Genes (Basel) ISSN: 2073-4425 Impact factor: 4.096