Proteasomal dysfunction in aging and Huntington disease
Protein degradation plays a central role in many cellular functions. Misfolded and damaged proteins are removed from the cells to avoid toxicity. Eukaryotic cells have two main routes for clearing misfolded or toxic proteins: the ubiquitin–proteasome and autophagy–lysosome pathways. The ubiquitin–pr...
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doaj-c7034e7d6b4b49d497a61ed10d54474b2021-03-22T12:36:15ZengElsevierNeurobiology of Disease1095-953X2011-07-0143148Proteasomal dysfunction in aging and Huntington diseaseXiao-Jiang Li0Shihua Li1Corresponding author. Department of Human Genetics, Emory University School of Medicine, 615 Michael St, Atlanta, GA 30322, USA. Fax: +1 404 727 3949.; Department of Human Genetics, Emory University School of Medicine, Atlanta, GA 30322, USADepartment of Human Genetics, Emory University School of Medicine, Atlanta, GA 30322, USAProtein degradation plays a central role in many cellular functions. Misfolded and damaged proteins are removed from the cells to avoid toxicity. Eukaryotic cells have two main routes for clearing misfolded or toxic proteins: the ubiquitin–proteasome and autophagy–lysosome pathways. The ubiquitin–proteasome system (UPS) is ubiquitously present in the cytoplasm, nucleus, and various subcellular regions whereas autophagy predominantly functions in the cytoplasm. The activity of the UPS often remains at a high level, whereas basal autophagy constitutively occurs at low levels in cells for the performance of homeostatic functions. Because of the presence of the UPS in the nucleus, the UPS function may be more important for clearing misfolded proteins in the nucleus. Polyglutamine diseases, including Huntington disease (HD), show the age-dependent neurological symptoms and the accumulation of misfolded proteins that are often found in the nucleus. The selective neuropathology in HD is also found to associate with the preferential accumulation of the disease protein huntingtin in neuronal cells. Although it is clear that the UPS is important for clearing mutant huntingtin, it remains unclear whether aging or HD affects the capacity of neuronal UPS to remove toxic and misfolded proteins. In this review, we focus on the relationship between the UPS function and aging as well as Huntington disease. We also discuss findings that suggest that aging is a more important factor that can negatively impact the function of the UPS. This article is part of a Special Issue entitled “Autophagy and protein degradation in neurological diseases.”http://www.sciencedirect.com/science/article/pii/S0969996110003931HuntingtinPolyglutamineUbiquitinProteasomeAutophagyAging |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiao-Jiang Li Shihua Li |
spellingShingle |
Xiao-Jiang Li Shihua Li Proteasomal dysfunction in aging and Huntington disease Neurobiology of Disease Huntingtin Polyglutamine Ubiquitin Proteasome Autophagy Aging |
author_facet |
Xiao-Jiang Li Shihua Li |
author_sort |
Xiao-Jiang Li |
title |
Proteasomal dysfunction in aging and Huntington disease |
title_short |
Proteasomal dysfunction in aging and Huntington disease |
title_full |
Proteasomal dysfunction in aging and Huntington disease |
title_fullStr |
Proteasomal dysfunction in aging and Huntington disease |
title_full_unstemmed |
Proteasomal dysfunction in aging and Huntington disease |
title_sort |
proteasomal dysfunction in aging and huntington disease |
publisher |
Elsevier |
series |
Neurobiology of Disease |
issn |
1095-953X |
publishDate |
2011-07-01 |
description |
Protein degradation plays a central role in many cellular functions. Misfolded and damaged proteins are removed from the cells to avoid toxicity. Eukaryotic cells have two main routes for clearing misfolded or toxic proteins: the ubiquitin–proteasome and autophagy–lysosome pathways. The ubiquitin–proteasome system (UPS) is ubiquitously present in the cytoplasm, nucleus, and various subcellular regions whereas autophagy predominantly functions in the cytoplasm. The activity of the UPS often remains at a high level, whereas basal autophagy constitutively occurs at low levels in cells for the performance of homeostatic functions. Because of the presence of the UPS in the nucleus, the UPS function may be more important for clearing misfolded proteins in the nucleus. Polyglutamine diseases, including Huntington disease (HD), show the age-dependent neurological symptoms and the accumulation of misfolded proteins that are often found in the nucleus. The selective neuropathology in HD is also found to associate with the preferential accumulation of the disease protein huntingtin in neuronal cells. Although it is clear that the UPS is important for clearing mutant huntingtin, it remains unclear whether aging or HD affects the capacity of neuronal UPS to remove toxic and misfolded proteins. In this review, we focus on the relationship between the UPS function and aging as well as Huntington disease. We also discuss findings that suggest that aging is a more important factor that can negatively impact the function of the UPS. This article is part of a Special Issue entitled “Autophagy and protein degradation in neurological diseases.” |
topic |
Huntingtin Polyglutamine Ubiquitin Proteasome Autophagy Aging |
url |
http://www.sciencedirect.com/science/article/pii/S0969996110003931 |
work_keys_str_mv |
AT xiaojiangli proteasomaldysfunctioninagingandhuntingtondisease AT shihuali proteasomaldysfunctioninagingandhuntingtondisease |
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1724208733577281536 |