4.8 Article

TDP-43 Loss-of-Function Causes Neuronal Loss Due to Defective Steroid Receptor-Mediated Gene Program Switching in Drosophila

期刊

CELL REPORTS
卷 3, 期 1, 页码 160-172

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2012.12.014

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资金

  1. Agency for Innovation by Science and Technology in Flanders (IWT)
  2. Foundation for Research Flanders (FWO) in Belgium
  3. Foundation for Alzheimer Research (SAO/FRMA)
  4. FWO [G.0704.11N]
  5. VIB Technology Watch Team in Belgium
  6. Etat Region Nord/Pas-de-Calais in France [11005007]
  7. VIB
  8. Interuniversity Attraction Poles program of the Belgian Science Policy Office (BELSPO) [P6/43]
  9. KU Leuven in Belgium [CREA/10/014 and PF/10/016]
  10. Foundation Against Cancer [2010-154]
  11. Medical Research Council
  12. Royal Society, UK
  13. Thierry Latran Foundation
  14. Motor Neurone Disease Association
  15. Methusalem program of the Flemish Government
  16. Alzheimers Research UK [ARUK-PhD2012-18] Funding Source: researchfish
  17. Medical Research Council [G0701498] Funding Source: researchfish
  18. MRC [G0701498] Funding Source: UKRI

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TDP-43 proteinopathy is strongly implicated in the pathogenesis of amyotrophic lateral sclerosis and related neurodegenerative disorders. Whether TDP-43 neurotoxicity is caused by a novel toxic gain-of-function mechanism of the aggregates or by a loss of its normal function is unknown. We increased and decreased expression of TDP-43 (dTDP-43) in Drosophila. Although upregulation of dTDP-43 induced neuronal ubiquitin and dTDP-43-positive inclusions, both up-and downregulated dTDP-43 resulted in selective apoptosis of bursicon neurons and highly similar transcriptome alterations at the pupal-adult transition. Gene network analysis and genetic validation showed that both up-and downregulated dTDP-43 directly and dramatically increased the expression of the neuronal microtubule-associated protein Map205, resulting in cytoplasmic accumulations of the ecdysteroid receptor (EcR) and a failure to switch EcR-dependent gene programs from a pupal to adult pattern. We propose that dTDP-43 neurotoxicity is caused by a loss of its normal function.

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