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The neuronal ubiquitin-proteasome system: murine models and their neurological phenotype
Authors:van Tijn Paula  Hol Elly M  van Leeuwen Fred W  Fischer David F
Affiliation:Netherlands Institute for Neuroscience, An Institute of the Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands.
Abstract:
The ubiquitin-proteasome system (UPS) is the main intracellular pathway for regulated protein turnover. This system is of vital importance for maintaining cellular homeostasis and is essential for neuronal functioning. It is therefore not surprising that impairment of this system is implicated in the pathogenesis of a variety of diseases, including neurological disorders, which are pathologically characterized by the presence of ubiquitin-positive protein aggregates. A direct correlation between intact neuronal functioning and the UPS is exemplified by a range of transgenic mouse models wherein mutations in components of the UPS lead to a neurodegenerative or neurological phenotype. These models have been proven useful in determining the role of the UPS in the nervous system in health and disease. Furthermore, recently developed in vivo models harboring reporter systems to measure UPS activity could also substantially contribute to understanding the effect of neurodegeneration on UPS function. The role of the UPS in neurodegeneration in vivo is reviewed by discussing the currently available murine models showing a neurological phenotype induced by genetic manipulation of the UPS.
Keywords:Aβ, amyloid-β   AD, Alzheimer's disease   AR-JP, Autosomal Recessive-Juvenile Parkinsonism   AS, Angelman syndrome   CHIP, C-terminal Hsp70 interacting protein   DA, dopamine   DUB, deubiquitinating enzyme   ERAD, endoplasmatic reticulum (ER-) associated degradation   GFP, green fluorescent protein   HD, Huntington's disease   HECT, homologous to E6-associated protein C-terminus   Hsp70, heat-shock protein 70   IB, inclusion body   KO, knockout   LTP, long-term potentiation   NMJ, neuromuscular junction   PD, Parkinson's disease   polyQ, polyglutamine   PrP, prion protein   RING, really interesting new gene   SCA, spinocerebellar ataxia   SN, substantia nigra   UBB+1, mutant ubiquitin   UFD, ubiquitin-fusion-degradation   UIM, ubiquitin interacting motif   UPS, ubiquitin-proteasome system
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