Chapter title |
Novel Homozygous Missense Mutation in SPG20 Gene Results in Troyer Syndrome Associated with Mitochondrial Cytochrome c Oxidase Deficiency
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Chapter number | 580 |
Book title |
JIMD Reports, Volume 33
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Published in |
JIMD Reports, August 2016
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DOI | 10.1007/8904_2016_580 |
Pubmed ID | |
Book ISBNs |
978-3-66-255011-3, 978-3-66-255012-0
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Authors |
Spiegel, Ronen, Soiferman, Devorah, Shaag, Avraham, Shalev, Stavit, Elpeleg, Orly, Saada, Ann, Ronen Spiegel, Devorah Soiferman, Avraham Shaag, Stavit Shalev, Orly Elpeleg, Ann Saada |
Abstract |
Troyer syndrome is an autosomal recessive form of hereditary spastic paraplegia (HSP) caused by deleterious mutations in the SPG20 gene. Although the disease is associated with a loss of function mechanism of spartin, the protein encoded by SPG20, the precise pathogenesis is yet to be elucidated. Recent data indicated an important role for spartin in both mitochondrial maintenance and function. Here we report a child presenting with progressive spastic paraparesis, generalized muscle weakness, dysarthria, impaired growth, and severe isolated decrease in muscle cytochrome c oxidase (COX) activity. Whole exome sequencing identified the homozygous c.988A>G variant in SPG20 gene (p.Met330Val) resulting in almost complete loss of spartin in skeletal muscle. Further analyses demonstrated significant tissue specific reduction of COX 4, a nuclear encoded subunit of COX, in muscle suggesting a role for spartin in proper mitochondrial respiratory chain function mediated by COX activity. Our findings need to be verified in other Troyer syndrome patients in order to classify it as a form of HSP caused by mitochondrial dysfunction. |
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