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Glial lipid droplets and neurodegeneration in a Drosophila model of complex I deficiency

Authors :
Bilal Khalil
Thomas Rival
Marie Thérèse Besson
Catherine Faivre-Sarrailh
Marie-Jeanne Cabirol-Pol
Institut de Biologie du Développement de Marseille (IBDM)
Aix Marseille Université (AMU)-Collège de France (CdF (institution))-Centre National de la Recherche Scientifique (CNRS)
Centre de recherche en neurobiologie - neurophysiologie de Marseille (CRN2M)
Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)
Source :
Glia, Glia, 2018, 66 (4), pp.874-888. ⟨10.1002/glia.23290⟩, Glia, Wiley, 2018, 66 (4), pp.874-888. ⟨10.1002/glia.23290⟩
Publication Year :
2018
Publisher :
HAL CCSD, 2018.

Abstract

International audience; Mitochondrial defects associated with respiratory chain complex I deficiency lead to heterogeneous fatal syndromes. While the role of NDUFS8, an essential subunit of the core assembly of the complex I, is established in mitochondrial diseases, the mechanisms underlying neuropathology are poorly understood. We developed a Drosophila model of NDUFS8 deficiency by knocking down the expression of its fly homologue in neurons or in glial cells. Downregulating ND23 in neurons resulted in shortened lifespan, and decreased locomotion. Although total brain ATP levels were decreased, histological analysis did not reveal any signs of neurodegeneration except for photoreceptors of the retina. Interestingly, ND23 deficiency-associated phenotypes were rescued by overexpressing the glucose transporter hGluT3 demonstrating that boosting glucose metabolism in neurons was sufficient to bypass altered mitochondrial functions and to confer neuroprotection. We then analyzed the consequences of ND23 knockdown in glial cells. In contrast to neuronal knockdown, loss of ND23 in glia did not lead to significant behavioral defects nor to reduced lifespan, but induced brain degeneration, as visualized by numerous vacuoles found all over the nervous tissue. This phenotype was accompanied by the massive accumulation of lipid droplets at the cortex-neuropile boundaries, suggesting an alteration of lipid metabolism in glia. These results demonstrate that complex I deficiency triggers metabolic alterations both in neurons and glial cells which may contribute to the neuropathology.

Details

Language :
English
ISSN :
08941491 and 10981136
Database :
OpenAIRE
Journal :
Glia, Glia, 2018, 66 (4), pp.874-888. ⟨10.1002/glia.23290⟩, Glia, Wiley, 2018, 66 (4), pp.874-888. ⟨10.1002/glia.23290⟩
Accession number :
edsair.doi.dedup.....f6234296af5e6776ff1b74efc1444a1a
Full Text :
https://doi.org/10.1002/glia.23290⟩