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Sensory neuropathy with bone destruction due to a mutation in the membrane-shaping atlastin GTPase 3.

Authors :
Kornak U
Mademan I
Schinke M
Voigt M
Krawitz P
Hecht J
Barvencik F
Schinke T
Gießelmann S
Beil FT
Pou-Serradell A
Vílchez JJ
Beetz C
Deconinck T
Timmerman V
Kaether C
De Jonghe P
Hübner CA
Gal A
Amling M
Mundlos S
Baets J
Kurth I
Source :
Brain : a journal of neurology [Brain] 2014 Mar; Vol. 137 (Pt 3), pp. 683-92. Date of Electronic Publication: 2014 Jan 22.
Publication Year :
2014

Abstract

Many neurodegenerative disorders present with sensory loss. In the group of hereditary sensory and autonomic neuropathies loss of nociception is one of the disease hallmarks. To determine underlying factors of sensory neurodegeneration we performed whole-exome sequencing in affected individuals with the disorder. In a family with sensory neuropathy with loss of pain perception and destruction of the pedal skeleton we report a missense mutation in a highly conserved amino acid residue of atlastin GTPase 3 (ATL3), an endoplasmic reticulum-shaping GTPase. The same mutation (p.Tyr192Cys) was identified in a second family with similar clinical outcome by screening a large cohort of 115 patients with hereditary sensory and autonomic neuropathies. Both families show an autosomal dominant pattern of inheritance and the mutation segregates with complete penetrance. ATL3 is a paralogue of ATL1, a membrane curvature-generating molecule that is involved in spastic paraplegia and hereditary sensory neuropathy. ATL3 proteins are enriched in three-way junctions, branch points of the endoplasmic reticulum that connect membranous tubules to a continuous network. Mutant ATL3 p.Tyr192Cys fails to localize to branch points, but instead disrupts the structure of the tubular endoplasmic reticulum, suggesting that the mutation exerts a dominant-negative effect. Identification of ATL3 as novel disease-associated gene exemplifies that long-term sensory neuronal maintenance critically depends on the structural organisation of the endoplasmic reticulum. It emphasizes that alterations in membrane shaping-proteins are one of the major emerging pathways in axonal degeneration and suggests that this group of molecules should be considered in neuroprotective strategies.

Details

Language :
English
ISSN :
1460-2156
Volume :
137
Issue :
Pt 3
Database :
MEDLINE
Journal :
Brain : a journal of neurology
Publication Type :
Academic Journal
Accession number :
24459106
Full Text :
https://doi.org/10.1093/brain/awt357