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A novel homozygous SACS mutation identified by whole exome sequencing-genotype phenotype correlations of all published cases

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Autor
Xiromerisiou G., Dadouli K., Marogianni C., Provatas A., Ntellas P., Rikos D., Stathis P., Georgouli D., Loules G., Zamanakou M., Hadjigeorgiou G.M.
Fecha
2020
Language
en
DOI
10.1007/s12031-019-01410-z
Materia
achilles reflex
adolescent
adult
Article
ataxia
autosomal recessive disorder
autosomal recessive spastic ataxia of Charlevoix Saguenay
Babinski reflex
bioinformatics
case report
cerebellum atrophy
clinical article
computer model
dysmetria
exon
gene deletion
genotype phenotype correlation
homozygosity
human
male
motor neuropathy
muscle atrophy
muscle weakness
neurologic examination
nuclear magnetic resonance imaging
nystagmus
optical coherence tomography
polyneuropathy
reading frame
sensory neuropathy
spasticity
tendon reflex
whole genome sequencing
young adult
genetics
homozygote
mutation
pathology
phenotype
spasticity
spinocerebellar degeneration
heat shock protein
SACS protein, human
Adolescent
Heat-Shock Proteins
Homozygote
Humans
Male
Muscle Spasticity
Mutation
Phenotype
Spinocerebellar Ataxias
Humana Press Inc.
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Resumen
ARSACS is an autosomal recessive disorder characterized by ataxia, spasticity, and polyneuropathy. A plethora of worldwide distributed mutations have been described so far. Here, we report two brothers, born to non-consanguineous parents, presenting with cerebellar ataxia and peripheral neuropathy. Whole-exome sequencing revealed the presence of a novel homozygous variant in the SACS gene. The variant was confirmed by Sanger sequencing and found at heterozygous state in both parents. This is the first reported mutation in this gene, in Greek population. This case report further highlights the growing trend of identifying genetic diseases previously restricted to single, ethnically isolated regions in many different ethnic groups worldwide. Additionally, we performed a systematic review of all published cases with SACs mutations. ARSACS seems to be an important cause of ataxia and many different types of mutations have been identified, mainly located in exon 10. We evaluated the mutation pathogenicity in all previously reported cases to investigate possible phenotype-genotype correlations. We managed to find a correlation between the pathogenicity of mutations, severity of the phenotype, and age of onset of ARSACS. Greater mutation numbers in different populations will be important and mutation-specific functional studies will be essential to identify the pathogenicity of the various ARSACS variants. © 2019, Springer Science+Business Media, LLC, part of Springer Nature.
URI
http://hdl.handle.net/11615/80854
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