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GDAP2 mutations implicate susceptibility to cellular stress in a new form of cerebellar ataxia.

Authors :
Eidhof, Ilse
Baets, Jonathan
Kamsteeg, Erik-Jan
Deconinck, Tine
Ninhuijs, Lisa van
Martin, Jean-Jacques
Schüle, Rebecca
Züchner, Stephan
Jonghe, Peter De
Schenck, Annette
van Ninhuijs, Lisa
De Jonghe, Peter
van de Warrenburg, Bart P
Source :
Brain: A Journal of Neurology; Sep2018, Vol. 141 Issue 9, p2592-2604, 13p
Publication Year :
2018

Abstract

Autosomal recessive cerebellar ataxias are a group of rare disorders that share progressive degeneration of the cerebellum and associated tracts as the main hallmark. Here, we report two unrelated patients with a new subtype of autosomal recessive cerebellar ataxia caused by biallelic, gene-disruptive mutations in GDAP2, a gene previously not implicated in disease. Both patients had onset of ataxia in the fourth decade. Other features included progressive spasticity and dementia. Neuropathological examination showed degenerative changes in the cerebellum, olive inferior, thalamus, substantia nigra, and pyramidal tracts, as well as tau pathology in the hippocampus and amygdala. To provide further evidence for a causative role of GDAP2 mutations in autosomal recessive cerebellar ataxia pathophysiology, its orthologous gene was investigated in the fruit fly Drosophila melanogaster. Ubiquitous knockdown of Drosophila Gdap2 resulted in shortened lifespan and motor behaviour anomalies such as righting defects, reduced and uncoordinated walking behaviour, and compromised flight. Gdap2 expression levels responded to stress treatments in control flies, and Gdap2 knockdown flies showed increased sensitivity to deleterious effects of stressors such as reactive oxygen species and nutrient deprivation. Thus, Gdap2 knockdown in Drosophila and GDAP2 loss-of-function mutations in humans lead to locomotor phenotypes, which may be mediated by altered responses to cellular stress. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00068950
Volume :
141
Issue :
9
Database :
Complementary Index
Journal :
Brain: A Journal of Neurology
Publication Type :
Academic Journal
Accession number :
131490591
Full Text :
https://doi.org/10.1093/brain/awy198