Identification of genes that modify ataxin-1-induced neurodegeneration
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- 2 November 2000
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 408 (6808) , 101-106
- https://doi.org/10.1038/35040584
Abstract
A growing number of human neurodegenerative diseases result from the expansion of a glutamine repeat in the protein that causes the disease1. Spinocerebellar ataxia type 1 (SCA1) is one such disease—caused by expansion of a polyglutamine tract in the protein ataxin-1. To elucidate the genetic pathways and molecular mechanisms underlying neuronal degeneration in this group of diseases, we have created a model system for SCA1 by expressing the full-length human SCA1 gene in Drosophila. Here we show that high levels of wild-type ataxin-1 can cause degenerative phenotypes similar to those caused by the expanded protein. We conducted genetic screens to identify genes that modify SCA1-induced neurodegeneration. Several modifiers highlight the role of protein folding and protein clearance in the development of SCA1. Furthermore, new mechanisms of polyglutamine pathogenesis were revealed by the discovery of modifiers that are involved in RNA processing, transcriptional regulation and cellular detoxification. These findings may be relevant to the treatment of polyglutamine diseases and, perhaps, to other neurodegenerative diseases, such as Alzheimer's and Parkinson's disease.Keywords
This publication has 21 references indexed in Scilit:
- Fourteen and counting: unraveling trinucleotide repeat diseasesHuman Molecular Genetics, 2000
- Genetic Suppression of Polyglutamine Toxicity in DrosophilaScience, 2000
- Dopaminergic Loss and Inclusion Body Formation in α-Synuclein Mice: Implications for Neurodegenerative DisordersScience, 2000
- Polyglutamine expansion down-regulates specific neuronal genes before pathologic changes in SCA1Nature Neuroscience, 2000
- Expanded polyglutamine peptides alone are intrinsically cytotoxic and cause neurodegeneration in DrosophilaHuman Molecular Genetics, 2000
- Mutation of the E6-AP Ubiquitin Ligase Reduces Nuclear Inclusion Frequency While Accelerating Polyglutamine-Induced Pathology in SCA1 MiceNeuron, 1999
- Function and assembly of nuclear pore complex proteinsBiochemistry and Cell Biology, 1999
- Ataxin-1 Nuclear Localization and AggregationCell, 1998
- SCA1 transgenic mice: A model for neurodegeneration caused by an expanded CAG trinucleotide repeatCell, 1995
- Glass encodes a site-specific DNA-binding protein that is regulated in response to positional signals in the developing Drosophila eye.Genes & Development, 1991