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PMID: 17200151 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

SGCE missense mutations that cause myoclonus-dystonia syndrome impair epsilon-sarcoglycan trafficking to the plasma membrane: modulation by ubiquitination and torsinA.

Human molecular genetics ·Vol. 16 ·No. 3 ·2007-02-01 ·Pages 327-42

Esapa CT, Waite A, Locke M, Benson MA, Kraus M, McIlhinney RA, Sillitoe RV, Beesley PW, Blake DJ

Abstract

Myoclonus-dystonia syndrome (MDS) is a genetically heterogeneous disorder characterized by myoclonic jerks often seen in combination with dystonia and psychiatric co-morbidities and epilepsy. Mutations in the gene encoding epsilon-sarcoglycan (SGCE) have been found in some patients with MDS. SGCE is a maternally imprinted gene with the disease being inherited in an autosomal dominant pattern with reduced penetrance upon maternal transmission. In the central nervous system, epsilon-sarcoglycan is widely expressed in neurons of the cerebral cortex, basal ganglia, hippocampus, cerebellum and the olfactory bulb. epsilon-Sarcoglycan is located at the plasma membrane in neurons, muscle and transfected cells. To determine the effect of MDS-associated mutations on the function of epsilon-sarcoglycan we examined the biosynthesis and trafficking of wild-type and mutant proteins in cultured cells. In contrast to the wild-type protein, disease-associated epsilon-sarcoglycan missense mutations (H36P, H36R and L172R) produce proteins that are undetectable at the cell surface and are retained intracellularly. These mutant proteins become polyubiquitinated and are rapidly degraded by the proteasome. Furthermore, torsinA, that is mutated in DYT1 dystonia, a rare type of primary dystonia, binds to and promotes the degradation of epsilon-sarcoglycan mutants when both proteins are co-expressed. These data demonstrate that some MDS-associated mutations in SGCE impair trafficking of the mutant protein to the plasma membrane and suggest a role for torsinA and the ubiquitin proteasome system in the recognition and processing of misfolded epsilon-sarcoglycan.

MeSH Terms
Animals COS Cells Cell Membrane/metabolism Cells, Cultured Chlorocebus aethiops Dystonic Disorders/genetics Embryo, Mammalian Humans Mice Molecular Chaperones/physiology Mutant Proteins/metabolism Mutation, Missense Myoclonus/genetics Protein Processing, Post-Translational/physiology Protein Transport Rats Sarcoglycans/genetics,metabolism Syndrome Ubiquitin/metabolism
Chemicals
Molecular Chaperones Mutant Proteins Sarcoglycans TOR1A protein, human Ubiquitin
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Esapa Christopher T
Department of Pharmacology, University of Oxford, Mansfield Road, Oxford OX1 3QT, UK.
Waite Adrian
Locke Matthew
Benson Matthew A
Kraus Michaela
McIlhinney R A Jeffrey
Sillitoe Roy V
Beesley Philip W
Blake Derek J
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2007-02-01
Epub
2007-00-02
Pages
327-42
Language
English
Region
England
NLM ID
9208958
Subset
IM
Grants
Medical Research Council · MC_U138162357 · United Kingdom
Wellcome Trust · United Kingdom
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