PubMed · 40830689
Ataxia and oculomotor apraxia caused by a large-scale deletion in the senataxin gene.
Abstract
Senataxin, an RNA/DNA helicase, is a key protein providing genome stability and one of the best characterized R-loop-binding factors playing an important role in transcription and DNA repair processes. Pathogenic SETX gene variants cause autosomal recessive spinocerebellar ataxia with axonal neuropathy (AOA2, MIM #606002) and autosomal dominant juvenile amyotrophic lateral sclerosis (ALS4, MIM #602433), rare neurodegenerative disorders characterized by juvenile onset of progressive cerebellar ataxia, axonal sensorimotor peripheral neuropathy, combined upper and lower motor neuron symptoms, and increased serum alpha-fetoprotein (AFP; specific for AOA2). We report two cases of adult patients presenting with cerebellar syndrome, scanned speech, and exercise intolerance which started in the second/third decade of life and were followed by muscle weakness and impaired gait coordination. Whole exome sequencing (WES) was performed to analyze single nucleotide and copy number variants. A decreased coverage of a genomic region of around 16 kb on chromosome 9 (chr9:132,295,852-132,311,876), suggesting a deletion encompassing 5 exons of the SETX gene (exons 11-15, NM_015046.7) was observed. This homozygous SETX (9q34.13) deletion leads to a frame shift and consequently truncation of the helicase domain in the protein. Loss-of-function variants in the SETX gene are known to be pathogenic. Statistical analysis of NGS data from the Polish population identified a few heterozygous carriers, suggesting its region-specific origin.
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Joanna M Rusecka, Biruta Kierdaszuk, Iwona Stępniak, Małgorzata Rydzanicz, Piotr Stawiński, Tomasz Gambin, Damian Loska, Magdalena M Kacprzak, Magdalena Kaliszewska, Dorota Piekutowska-Abramczuk, Anna M Kamińska, Ewa Pronicka, Ewa Bartnik, Anna Kostera-Pruszczyk, Rafał Płoski, Agnieszka Sobczyńska-Tomaszewska, Katarzyna Tońska. 2025-08-20. Ataxia and oculomotor apraxia caused by a large-scale deletion in the senataxin gene.. https://doi.org/10.1007/s13353-025-01001-2
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