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CEP89 is required for mitochondrial metabolism and neuronal function in man and fly

Bregje W.M. Van Bon, Merel A.W. Oortveld, Leo G. Nijtmans, Michaela Fenckova, Bonnie Nijhof, Judith Besseling, Melissa Vos, Jamie M. Kramer, Nicole de Leeuw, Anna Castells-Nobau, Lenke Asztalos, Erika Viragh, Mariken Ruiter, Falko Hofmann, Lillian Eshuis, Licio Collavin, Martijn A. Huynen, Zoltan Asztalos, Patrik Verstreken, Richard J. RodenburgJan A. Smeitink, Bert B.A. de Vries*, Annette Schenck

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

It is estimated that the human mitochondrial proteome consists of 1000-1500 distinct proteins. The majority of these support the various biochemical pathways that are active in these organelles. Individuals with an oxidative phosphorylation disorder of unknown cause provide a unique opportunity to identify novel genes implicated in mitochondrial biology. We identified a homozygous deletion of CEP89 in a patient with isolated complex IV deficiency, intellectual disability and multisystemic problems. CEP89 is a ubiquitously expressed and highly conserved gene of unknown function. Immunocytochemistry and cellular fractionation experiments showed that CEP89 is present both in the cytosol and in the mitochondrial intermembrane space. Furthermore, we ascertained in vitro that downregulation of CEP89 resulted in a severe decrease in complex IV in-gel activity and altered mobility, suggesting that the complex is aberrantly formed. Two-dimensional BN-SDS gel analysis revealed that CEP89 associates with a high-molecular weight complex. Together, these data confirm a role for CEP89 in mitochondrial metabolism. In addition, we modeled CEP89 loss of function in Drosophila. Ubiquitous knockdown of fly Cep89 decreased complex IV activity and resulted in complete lethality. Furthermore, Cep89 is required for mitochondrial integrity, membrane depolarization and synaptic transmission of photoreceptor neurons, and for (sub)synaptic organization of the larval neuromuscular junction. Finally, we tested neuronal Cep89 knockdown flies in the light-offjump reflex habituation assay, which revealed its role in learning. We conclude that CEP89 proteins play an important role in mitochondrial metabolism, especially complex IV activity, and are required for neuronal and cognitive function across evolution.

OriginalspracheEnglisch
ZeitschriftHuman Molecular Genetics
Jahrgang22
Ausgabenummer15
Seiten (von - bis)3138-3151
Seitenumfang14
ISSN0964-6906
DOIs
PublikationsstatusVeröffentlicht - 08.2013

Fördermittel

This work was supported by the Netherlands Organizations for Scientific Research/Health Research and Development (NWO/ ZonMW) (917-86-319 to B.B.A.d.V and 917-96-346 to A.S.); the AnEUploidy project (LSHG-CT-2006-37627 to B.v.B. and B.B.A.d.V.); the European Union under the 7th framework program (Gencodys HEALTH-F4-2010-241995 to Z.A., B.B.A.d.V. and A.S.); the Hungarian Scientific Research Fund (K-82090 to Z.A.); the Dutch Brain Foundation (B.B.A.d.V.); a predoctoral fellowship of the Institute for Science and Technology Vlaanderen (IWT) (to M.V.), a post-doctoral fellowship by the research fund KU Leuven (to M.V.), an European Research Council (ERC) Starting Grant (to P.V.), the Fund for Scientific Research Vlaanderen (FWO) (to P.V.), the research fund KU Leuven (to P.V.), the Interuniversity Attraction Pole (IAP) programme from the Belgian Science Policy Office (BELSPO) (to P.V.), the Flemish Institute for Biotechnology (VIB) (to P.V.) and the Jérôme Lejeune foundation (A.S.).

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 3 – Gesundheit und Wohlergehen
    SDG 3 – Gesundheit und Wohlergehen

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