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Familial atypical parkinsonism with rare variant in VPS35 and FBXO7 genes: A case report
T. Bartonikova, K. Mensikova, L. Mikulicova, R. Vodicka, R. Vrtel, M. Godava, M. Vastik, M. Kaiserova, P. Otruba, I. Dolinova, M. Nevrly, P. Kanovsky,
Language English Country United States
Document type Case Reports, Journal Article
Grant support
NV15-32715A
MZ0
CEP Register
NT14407
MZ0
CEP Register
Digital library NLK
Full text - Article
Full text - Article
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Source
NLK
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PubMed Central
from 2013 to 2 weeks ago
Europe PubMed Central
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from 2013-01-01
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from 2014-01-01
- MeSH
- F-Box Proteins genetics MeSH
- Genetic Predisposition to Disease MeSH
- Genetic Testing MeSH
- Humans MeSH
- Magnetic Resonance Imaging methods MeSH
- Brain diagnostic imaging MeSH
- Mutation MeSH
- Parkinsonian Disorders * complications diagnosis genetics MeSH
- Supranuclear Palsy, Progressive * diagnosis etiology physiopathology MeSH
- Pedigree MeSH
- Aged, 80 and over MeSH
- Vesicular Transport Proteins genetics MeSH
- Check Tag
- Humans MeSH
- Male MeSH
- Aged, 80 and over MeSH
- Publication type
- Journal Article MeSH
- Case Reports MeSH
BACKGROUND: A higher prevalence of parkinsonism was recently identified in southeastern Moravia (Czech Republic). Further research confirmed 3 large pedigrees with familial autosomal-dominant parkinsonism spanning 5 generations. METHODS: This case report concerns a patient belonging to one of these 3 pedigrees, in whom motor and oculomotor symptoms were accompanied by frontal-type dementia, who finally developed a clinical phenotype of progressive supranuclear palsy. Molecular genetic examinations were performed due to the positive family history. RESULTS: No previously described causal mutation was found. After filtering against common variants (minor allele frequency (MAF) < 0.01), 2 noncoding and 1 synonymous rare mutation potentially associable with parkinsonism were identified: GIGYF2-GRB10 Interacting GYF Protein 2, PARK11 (c.*2030G > A, rs115669549); VPS35 gene-vacuolar protein sorting 35, PARK17 (c.102 + 33G > A, rs192115886); and FBXO7-F-box only protein 7 gene, PARK15 (c.540A > G, rs41311141). CONCLUSION: As to the changes in the FBXO7 and VPS35 genes (despite phylogenetic conservation in primates), probably neither the FBXO7 nor the VPS35 variants will be direct causal mutations. Both described variants, and possibly the influence of their combination, could increase the risk of the disease.
References provided by Crossref.org
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