Evidence for both nucleus and cytoplasm as subcellular sites of pathogenesis in Huntington'sdisease in cell culture and in transgenic mice expressing mutant huntingtin
- 29 June 1999
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 354 (1386) , 1047-1055
- https://doi.org/10.1098/rstb.1999.0457
Abstract
A unifying feature of the CAG expansion diseases is the formation of intracellular aggregates composed of the mutant polyglutamine-expanded protein. Despite the presence of aggregates in affected patients, the precise relationship between aggregates and disease pathogenesis is unresolved. Results from in vivo and in vitro studies of mutant huntingtin have led to the hypothesis that nuclear localization of aggregates is critical for the pathology of Huntington'sdisease (HD). We tested this hypothesis using a 293T cell culture model system by comparing the frequency and toxicity of cytoplasmic and nuclear huntingtin aggregates. Insertion of nuclear import or export sequences into huntingtin fragments containing 548 or 151 amino acids was used to reverse the normal localization of these proteins. Changing the subcellular localization of the fragments did not influence their total aggregate frequency. There were also no significant differences in toxicity associated with the presence of nuclear compared with cytoplasmic aggregates. These studies, together with findings in transgenic mice, suggest two phases for the pathogenesis of HD, with the initial toxicity in the cytoplasm followed by proteolytic processing of huntingtin, nuclear translocation with increased nuclear concentration of N-terminal fragments, seeding of aggregates and resultant apoptotic death. These findings support the nucleus and cytosol as subcellular sites for pathogenesis in HD.Keywords
This publication has 46 references indexed in Scilit:
- Nonneural Nuclear Inclusions of Androgen Receptor Protein in Spinal and Bulbar Muscular AtrophyThe American Journal of Pathology, 1998
- Mitochondria and ApoptosisScience, 1998
- Aggregation of N-terminal huntingtin is dependent on the length of its glutamine repeatsHuman Molecular Genetics, 1998
- Intranuclear Neuronal Inclusions in Huntington's Disease and Dentatorubral and Pallidoluysian Atrophy: Correlation between the Density of Inclusions andIT15CAG Triplet Repeat LengthNeurobiology of Disease, 1998
- Aggregation of Huntingtin in Neuronal Intranuclear Inclusions and Dystrophic Neurites in BrainScience, 1997
- HIP1, a human homologue of S. cerevisiae Sla2p, interacts with membrane-associated huntingtin in the brainNature Genetics, 1997
- Screening for proteins with polyglutamine expansions in autosomal dominant cerebellar ataxiasHuman Molecular Genetics, 1996
- Nucleocytoplasmic TransportScience, 1996
- A huntingtin-associated protein enriched in brain with implications for pathologyNature, 1995
- Polyglutamine expansion as a pathological epitope in Huntington's disease and four dominant cerebellar ataxiasNature, 1995