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Genetic and phenotypic characterization of complex hereditary spastic paraplegia

Eleanna Kara, Arianna Tucci, Claudia Manzoni, David S. Lynch, Marilena Elpidorou, Conceição Bettencourt, Viorica Chelban, Andreea Manole, Sherifa A. Hamed, Nourelhoda A. Haridy, Monica Federoff, Elisavet Preza, Deborah Hughes, Alan Pittman, Zane Jaunmuktane

Brain · 2016 · ▲ 222 citations

Abstract

The hereditary spastic paraplegias are a heterogeneous group of degenerative disorders that are clinically classified as either pure with predominant lower limb spasticity, or complex where spastic paraplegia is complicated with additional neurological features, and are inherited in autosomal dominant, autosomal recessive or X-linked patterns. Genetic defects have been identified in over 40 different genes, with more than 70 loci in total. Complex recessive spastic paraplegias have in the past been frequently associated with mutations in SPG11 (spatacsin), ZFYVE26/SPG15, SPG7 (paraplegin) and a handful of other rare genes, but many cases remain genetically undefined. The overlap with other neurodegenerative disorders has been implied in a small number of reports, but not in larger disease series. This deficiency has been largely due to the lack of suitable high throughput techniques to investigate the genetic basis of disease, but the recent availability of next generation sequencing can facilitate the identification of disease-causing mutations even in extremely heterogeneous disorders. We investigated a series of 97 index cases with complex spastic paraplegia referred to a tertiary referral neurology centre in London for diagnosis or management. The mean age of onset was 16 years (range 3 to 39). The SPG11 gene was first analysed, revealing homozygous or compound heterozygous mutations in 30/97 (30.9%) of probands, the largest SPG11 series reported to date, and by far the most common cause of complex spastic paraplegia in the UK, with severe and progressive clinical features and other neurological manifestations, linked with magnetic resonance imaging defects. Given the high frequency of SPG11 mutations, we studied the autophagic response to starvation in eight affected SPG11 cases and control fibroblast cell lines, but in our restricted study we did not observe correlations between disease status and autophagic or lysosomal markers. In the remaining cases, next generation sequencing was carried out revealing variants in a number of other known complex spastic paraplegia genes, including five in SPG7 (5/97), four in FA2H (also known as SPG35) (4/97) and two in ZFYVE26/SPG15 Variants were identified in genes usually associated with pure spastic paraplegia and also in the Parkinson's disease-associated gene ATP13A2, neuronal ceroid lipofuscinosis gene TPP1 and the hereditary motor and sensory neuropathy DNMT1 gene, highlighting the genetic heterogeneity of spastic paraplegia. No plausible genetic cause was identified in 51% of probands, likely indicating the existence of as yet unidentified genes.

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Provenance

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OpenAlex
DOI
10.1093/brain/aww111
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2026-06-05 MST

Cite this

APA
Kara, E., Tucci, A., Manzoni, C., Lynch, D.S., Elpidorou, M., Bettencourt, C., Chelban, V., Manole, A., Hamed, S.A., Haridy, N.A., Federoff, M., Preza, E., Hughes, D., Pittman, A., Jaunmuktane, Z., Brandner, S., Xiromerisiou, G., Wiethoff, S., Schottlaender, L., &amp; Proukakis, C. (2016). Genetic and phenotypic characterization of complex hereditary spastic paraplegia. <em>Brain</em>. https://doi.org/10.1093/brain/aww111
Vancouver
Kara E, Tucci A, Manzoni C, Lynch DS, Elpidorou M, Bettencourt C, et al. Genetic and phenotypic characterization of complex hereditary spastic paraplegia. Brain. 2016. doi:10.1093/brain/aww111.
BibTeX
@article{eleanna2016Geneti, title = {Genetic and phenotypic characterization of complex hereditary spastic paraplegia}, author = {Eleanna Kara and Arianna Tucci and Claudia Manzoni and David S. Lynch and Marilena Elpidorou and Conceição Bettencourt and Viorica Chelban and Andreea Manole and Sherifa A. Hamed and Nourelhoda A. Haridy and Monica Federoff and Elisavet Preza and Deborah Hughes and Alan Pittman and Zane Jaunmuktane and Sebastian Brandner and Georgia Xiromerisiou and Sarah Wiethoff and Lucía Schottlaender and Christos Proukakis and Huw R. Morris and Tom Warner and Kailash P. Bhatia and L.V. Prasad Korlipara and Andrew Singleton}, journal = {Brain}, year = {2016}, doi = {10.1093/brain/aww111}, }

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