4.7 Article

Acute Polyglutamine Expression in Inducible Mouse Model Unravels Ubiquitin/Proteasome System Impairment and Permanent Recovery Attributable to Aggregate Formation

期刊

JOURNAL OF NEUROSCIENCE
卷 30, 期 10, 页码 3675-3688

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.5673-09.2010

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资金

  1. Spanish Ministry of Science/MEC
  2. CiberNed
  3. Comunidad Autonoma de Madrid
  4. Fundacion La Caixa
  5. Fundacion Ramon Areces
  6. HighQ Foundation
  7. Swedish Research Council
  8. Nordic Center of Excellence Neurodegeneration
  9. Swedish Cancer Society
  10. Hereditary Disease Foundation
  11. Marie Curie Research Training Network [MRTN-CT-2004-512585]
  12. Karolinska Institute

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The presence of intracellular ubiquitylated inclusions in neurodegenerative disorders and the role of the ubiquitin/proteasome system (UPS) in degrading abnormal hazardous proteins have given rise to the hypothesis that UPS-impairment underlies neurodegenerative processes. However, this remains controversial for polyglutamine disorders such as Huntington disease (HD). Whereas studies in cellular models have provided evidence in favor of UPS-impairment attributable to expression of the N-terminal fragment of mutant huntingtin (N-mutHtt), similar studies on mouse models failed to do so. Furthermore, we have recently shown that the increase in polyubiquitin conjugates reported in the brain of N-mutHtt mice occurs in the absence of a general UPS-impairment. In the present study we aim to clarify the potential of N-mutHtt to impair UPS function in vivo as well as the mechanisms by which neurons may adapt after prolonged exposure to N-mutHtt in genetic models. By combining UPS reporter mice with an inducible mouse model of HD, we demonstrate for the first time polyglutamine-induced global UPS-impairment in vivo. UPS-impairment occurred transiently after acute N-mutHtt expression and restoration correlated with appearance of inclusion bodies (IBs). Consistently, UPS recovery did not take place when IB formation was prevented through administration of N-mutHtt aggregation-inhibitors in both cellular and animal models. Finally, no UPS-impairment was detected in old mice constitutively expressing N-mutHtt despite the age-associated decrease in brain proteasome activity. Therefore, our data reconcile previous contradictory reports by showing that N-mutHtt can indeed impair UPS function in vivo and that N-mutHtt aggregation leads to long lasting restoration of UPS function.

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