4.7 Article

Depletion of 26S proteasomes in mouse brain neurons causes neurodegeneration and Lewy-like inclusions resembling human pale bodies

期刊

JOURNAL OF NEUROSCIENCE
卷 28, 期 33, 页码 8189-8198

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.2218-08.2008

关键词

neuronal death; neuropathology; genetics; transgenic; Parkinson's disease; dementia; proteolysis

资金

  1. The Wellcome Trust
  2. Biotechnology and Biological Sciences Research Council
  3. Alzheimer's Research Trust
  4. Neuroscience Support Group at the Queen's Medical Centre
  5. Parkinson's Disease Society
  6. Swedish Research Council
  7. Alzheimers Research UK [ART-RF2004B-1, ART-PG2001-1] Funding Source: researchfish
  8. Parkinson's UK [F-0702] Funding Source: researchfish

向作者/读者索取更多资源

Ubiquitin-positive intraneuronal inclusions are a consistent feature of the major human neurodegenerative diseases, suggesting that dysfunction of the ubiquitin proteasome system is central to disease etiology. Research using inhibitors of the 20S proteasome to model Parkinson's disease is controversial. We report for the first time that specifically 26S proteasomal dysfunction is sufficient to trigger neurodegenerative disease. Here, we describe novel conditional genetic mouse models using the Cre/loxP system to spatially restrict inactivation of Psmc1 (Rpt2/S4) to neurons of either the substantia nigra or forebrain (e. g., cortex, hippocampus, and striatum). PSMC1 is an essential subunit of the 26S proteasome and Psmc1 conditional knock-out mice display 26S proteasome depletion in targeted neurons, in which the 20S proteasome is not affected. Impairment of specifically ubiquitin-mediated protein degradation caused intraneuronal Lewy-like inclusions and extensive neurodegeneration in the nigrostriatal pathway and forebrain regions. Ubiquitin and alpha-synuclein neuropathology was evident, similar to human Lewy bodies, but interestingly, inclusion bodies contained mitochondria. We support this observation by demonstrating mitochondria in an early form of Lewy body (pale body) from Parkinson's disease patients. The results directly confirm that 26S dysfunction in neurons is involved in the pathology of neurodegenerative disease. The model demonstrates that 26S proteasomes are necessary for normal neuronal homeostasis and that 20S proteasome activity is insufficient for neuronal survival. Finally, we are providing the first reproducible genetic platform for identifying new therapeutic targets to slow or prevent neurodegeneration.

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