A comprehensive phenotypic characterization of a whole-body Wdr45 knock-out mouse
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Published:2021-05-27
Issue:5
Volume:32
Page:332-349
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ISSN:0938-8990
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Container-title:Mammalian Genome
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language:en
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Short-container-title:Mamm Genome
Author:
Biagosch Caroline A.ORCID, Vidali SilviaORCID, Faerberboeck Michael, Hensler Svenja-Viola, Becker LoreORCID, Amarie Oana V.ORCID, Aguilar-Pimentel AntonioORCID, Garrett LillianORCID, Klein-Rodewald TanjaORCID, Rathkolb BirgitORCID, Zanuttigh EnricaORCID, Calzada-Wack JuliaORCID, da Silva-Buttkus PatriciaORCID, Rozman JanORCID, Treise IrinaORCID, Fuchs HelmutORCID, Gailus-Durner ValerieORCID, de Angelis Martin HraběORCID, Janik DirkORCID, Wurst WolfgangORCID, Mayr Johannes A.ORCID, Klopstock ThomasORCID, Meitinger ThomasORCID, Prokisch HolgerORCID, Iuso ArcangelaORCID
Abstract
AbstractPathogenic variants in the WDR45 (OMIM: 300,526) gene on chromosome Xp11 are the genetic cause of a rare neurological disorder characterized by increased iron deposition in the basal ganglia. As WDR45 encodes a beta-propeller scaffold protein with a putative role in autophagy, the disease has been named Beta-Propeller Protein-Associated Neurodegeneration (BPAN). BPAN represents one of the four most common forms of Neurodegeneration with Brain Iron Accumulation (NBIA). In the current study, we generated and characterized a whole-body Wdr45 knock-out (KO) mouse model. The model, developed using TALENs, presents a 20-bp deletion in exon 2 of Wdr45. Homozygous females and hemizygous males are viable, proving that systemic depletion of Wdr45 does not impair viability and male fertility in mice. The in-depth phenotypic characterization of the mouse model revealed neuropathology signs at four months of age, neurodegeneration progressing with ageing, hearing and visual impairment, specific haematological alterations, but no brain iron accumulation. Biochemically, Wdr45 KO mice presented with decreased complex I (CI) activity in the brain, suggesting that mitochondrial dysfunction accompanies Wdr45 deficiency. Overall, the systemic Wdr45 KO described here complements the two mouse models previously reported in the literature (PMIDs: 26,000,824, 31,204,559) and represents an additional robust model to investigate the pathophysiology of BPAN and to test therapeutic strategies for the disease.
Funder
NBIA Disorders Association Bundesministerium für Bildung und Forschung Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH)
Publisher
Springer Science and Business Media LLC
Reference44 articles.
1. Abidi A, Mignon-Ravix C, Cacciagli P, Girard N, Milh M, Villard L (2016) Early-onset epileptic encephalopathy as the initial clinical presentation of WDR45 deletion in a male patient. Eur J Hum Genet 24(4):615–618. https://doi.org/10.1038/ejhg.2015.159 2. André V, Gau C, Scheideler A, Aguilar-Pimentel JA, Amarie OV, Becker L, Garrett L, Hans W, Hölter SM, Janik D, Moreth K, Neff F, Östereicher M, Racz I, Rathkolb B, Rozman J, Bekeredjian R, Graw J, Klingenspor M, Klopstock T, Ollert M, Schmidt-Weber C, Wolf E, Wurst W, Gailus-Durner V, Brielmeier M, Fuchs H, Hrabé de Angelis M (2018) Laboratory mouse housing conditions can be improved using common environmental enrichment without compromising data. PLoS Biol 16(4):e2005019. https://doi.org/10.1371/journal.pbio.2005019 3. Behrends C, Sowa ME, Gygi SP, Harper JW (2010) Network organization of the human autophagy system. Nature 466(7302):68–76. https://doi.org/10.1038/nature09204 4. Belohlavkova A, Sterbova K, Betzler C, Burkhard S, Panzer A, Wolff M, Lassuthova P, Vlckova M, Kyncl M, Benova B, Jahodova A, Kudr M, Goerg M, Dusek P, Seeman P, Kluger G, Krsek P (2020) Clinical features and blood iron metabolism markers in children with beta-propeller protein associated neurodegeneration. Eur J Paediatr Neurol 28:81–88. https://doi.org/10.1016/j.ejpn.2020.07.010 5. Berger A, Mayr JA, Meierhofer D, Fötschl U, Bittner R, Budka H, Grethen C, Huemer M, Kofler B, Sperl W (2003) Severe depletion of mitochondrial DNA in spinal muscular atrophy. Acta Neuropathol (berl) 105(3):245–251. https://doi.org/10.1007/s00401-002-0638-1
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