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Published on: July 21, 2022
A combinatorial approach to identify calpain cleavage sites in the Machado-Joseph disease protein ataxin-3
Jonasz J Weber1,2, Matthias Golla1,2, Giambattista Guaitoli3,4
1Institute of Medical Genetics and Applied Genomics, University of Tübingen, Tübingen, Germany.
Abstract:
Ataxin-3, the disease protein in Machado-Joseph disease, is known to be proteolytically modified by various enzymes including two major families of proteases, caspases and calpains. This processing results in the generation of toxic fragments of the polyglutamine-expanded protein. Although various approaches were undertaken to identify cleavage sites within ataxin-3 and to evaluate the impact of fragments on the molecular pathogenesis of Machado-Joseph disease, calpain-mediated cleavage of the disease protein and the localization of cleavage sites remained unclear. Here, we report on the first precise localization of calpain cleavage sites in ataxin-3 and on the characterization of the resulting breakdown products. After confirming the occurrence of calpain-derived fragmentation of ataxin-3 in patient-derived cell lines and post-mortem brain tissue, we combined in silico prediction tools, western blot analysis, mass spectrometry, and peptide overlay assays to identify calpain cleavage sites. We found that ataxin-3 is primarily cleaved at two sites, namely at amino acid positions D208 and S256 and mutating amino acids at both cleavage sites to tryptophan nearly abolished ataxin-3 fragmentation. Furthermore, analysis of calpain cleavage-derived fragments showed distinct aggregation propensities and toxicities of C-terminal polyglutamine-containing breakdown products. Our data elucidate the important role of ataxin-3 proteolysis in the pathogenesis of Machado-Joseph disease and further emphasize the relevance of targeting this disease pathway as a treatment strategy in neurodegenerative disorders.
Insights
Researchers precisely located calpain cleavage sites in ataxin-3, a protein implicated in Machado-Joseph disease. This cleavage generates toxic fragments, highlighting a potential therapeutic target for neurodegenerative disorders.
Area of Science:
- Neurobiology
- Molecular Biology
- Genetics
Background:
- Ataxin-3 is the disease protein in Machado-Joseph disease (MJD).
- Proteolytic modification of ataxin-3 by caspases and calpains generates toxic fragments.
- Previous studies have not precisely localized calpain cleavage sites in ataxin-3.
Purpose of the Study:
- To precisely localize calpain cleavage sites in ataxin-3.
- To characterize the breakdown products generated by calpain cleavage.
- To investigate the role of ataxin-3 proteolysis in Machado-Joseph disease pathogenesis.
Main Methods:
- In silico prediction tools
- Western blot analysis
- Mass spectrometry
- Peptide overlay assays
- Site-directed mutagenesis
Main Results:
- Ataxin-3 is primarily cleaved by calpains at positions D208 and S256.
- Mutating these cleavage sites significantly reduced ataxin-3 fragmentation.
- Calpain cleavage-derived fragments exhibit distinct aggregation propensities and toxicities.
- Fragmentation was confirmed in patient-derived cell lines and post-mortem brain tissue.
Conclusions:
- This study precisely maps calpain cleavage sites in ataxin-3.
- Calpain-mediated ataxin-3 cleavage generates toxic fragments contributing to Machado-Joseph disease.
- Targeting ataxin-3 proteolysis is a promising therapeutic strategy for MJD and other neurodegenerative disorders.

