Small Heat-shock Proteins Prevent -Synuclein Aggregation via Transient Interactions and Their Efficacy Is Affected by the Rate of Aggregation
| dc.contributor.author | Cox, Dezerae | |
| dc.contributor.author | Selig, Emily | |
| dc.contributor.author | Griffin, Michael D.W. | |
| dc.contributor.author | Carver, John | |
| dc.contributor.author | Ecroyd, Heath | |
| dc.date.accessioned | 2018-11-29T22:54:40Z | |
| dc.date.available | 2018-11-29T22:54:40Z | |
| dc.date.issued | 2016 | |
| dc.date.updated | 2018-11-29T08:01:30Z | |
| dc.description.abstract | The aggregation of α-synuclein (α-syn) into amyloid fibrils is associated with neurodegenerative diseases, collectively referred to as the α-synucleinopathies. In vivo, molecular chaperones, such as the small heat-shock proteins (sHsps), normally act to prevent protein aggregation; however, it remains to be determined how aggregation-prone α-syn evades sHsp chaperone action leading to its disease-associated deposition. This work examines the molecular mechanism by which two canonical sHsps, αB-crystallin (αB-c) and Hsp27, interact with aggregation-prone α-syn to prevent its aggregation in vitro. Both sHsps are very effective inhibitors of α-syn aggregation, but no stable complex between the sHsps and α-syn was detected, indicating that the sHsps inhibit α-syn aggregation via transient interactions. Moreover, the ability of these sHsps to prevent α-syn aggregation was dependent on the kinetics of aggregation; the faster the rate of aggregation (shorter the lag phase), the less effective the sHsps were at inhibiting fibril formation of α-syn. Thus, these findings indicate that the rate at which α-syn aggregates in cells may be a significant factor in how it evades sHsp chaperone action in the α-synucleinopathies. | |
| dc.format.mimetype | application/pdf | en_AU |
| dc.identifier.issn | 1083-351X | |
| dc.identifier.uri | http://hdl.handle.net/1885/152872 | |
| dc.publisher | American Society for Biochemistry and Molecular Biology Inc | |
| dc.source | Journal of Biological Chemistry | |
| dc.title | Small Heat-shock Proteins Prevent -Synuclein Aggregation via Transient Interactions and Their Efficacy Is Affected by the Rate of Aggregation | |
| dc.type | Journal article | |
| dcterms.accessRights | Open Access | en_AU |
| local.bibliographicCitation.issue | 43 | |
| local.bibliographicCitation.lastpage | 22629 | |
| local.bibliographicCitation.startpage | 22618 | |
| local.contributor.affiliation | Cox, Dezerae, University of Wollongong | |
| local.contributor.affiliation | Selig, Emily, The University of Melbourne | |
| local.contributor.affiliation | Griffin, Michael D.W., University of Melbourne | |
| local.contributor.affiliation | Carver, John, College of Science, ANU | |
| local.contributor.affiliation | Ecroyd, Heath, University of Wollongong | |
| local.contributor.authoruid | Carver, John, u1571001 | |
| local.description.notes | Imported from ARIES | |
| local.identifier.absfor | 030406 - Proteins and Peptides | |
| local.identifier.absseo | 970103 - Expanding Knowledge in the Chemical Sciences | |
| local.identifier.ariespublication | u8801298xPUB231 | |
| local.identifier.citationvolume | 291 | |
| local.identifier.doi | 10.1074/jbc.M116.739250 | |
| local.identifier.scopusID | 2-s2.0-84992316267 | |
| local.identifier.thomsonID | 000386760600022 | |
| local.type.status | Published Version |
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