Literature DB >> 25065913

ELOVL5 mutations cause spinocerebellar ataxia 38.

Eleonora Di Gregorio1, Barbara Borroni2, Elisa Giorgio3, Daniela Lacerenza3, Marta Ferrero3, Nicola Lo Buono3, Neftj Ragusa3, Cecilia Mancini3, Marion Gaussen4, Alessandro Calcia3, Nico Mitro5, Eriola Hoxha6, Isabella Mura7, Domenico A Coviello7, Young-Ah Moon8, Christelle Tesson4, Giovanna Vaula9, Philippe Couarch10, Laura Orsi9, Eleonora Duregon11, Mauro Giulio Papotti11, Jean-François Deleuze12, Jean Imbert13, Chiara Costanzi2, Alessandro Padovani2, Paola Giunti14, Marcel Maillet-Vioud15, Alexandra Durr16, Alexis Brice16, Filippo Tempia6, Ada Funaro3, Loredana Boccone17, Donatella Caruso6, Giovanni Stevanin18, Alfredo Brusco19.   

Abstract

Spinocerebellar ataxias (SCAs) are a heterogeneous group of autosomal-dominant neurodegenerative disorders involving the cerebellum and 23 different genes. We mapped SCA38 to a 56 Mb region on chromosome 6p in a SCA-affected Italian family by whole-genome linkage analysis. Targeted resequencing identified a single missense mutation (c.689G>T [p.Gly230Val]) in ELOVL5. Mutation screening of 456 independent SCA-affected individuals identified the same mutation in two further unrelated Italian families. Haplotyping showed that at least two of the three families shared a common ancestor. One further missense variant (c.214C>G [p.Leu72Val]) was found in a French family. Both missense changes affect conserved amino acids, are predicted to be damaging by multiple bioinformatics tools, and were not identified in ethnically matched controls or within variant databases. ELOVL5 encodes an elongase involved in the synthesis of polyunsaturated fatty acids of the ω3 and ω6 series. Arachidonic acid and docosahexaenoic acid, two final products of the enzyme, were reduced in the serum of affected individuals. Immunohistochemistry on control mice and human brain demonstrated high levels in Purkinje cells. In transfection experiments, subcellular localization of altered ELOVL5 showed a perinuclear distribution with a signal increase in the Golgi compartment, whereas the wild-type showed a widespread signal in the endoplasmic reticulum. SCA38 and SCA34 are examples of SCAs due to mutations in elongase-encoding genes, emphasizing the importance of fatty-acid metabolism in neurological diseases.
Copyright © 2014 The American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

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Year:  2014        PMID: 25065913      PMCID: PMC4129408          DOI: 10.1016/j.ajhg.2014.07.001

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


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