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Tetramer Dissociation and Monomer Partial Unfolding Precedes Protofibril Formation in Amyloidogenic Transthyretin Variants

dc.contributor.authorQuintas, Alexandre
dc.contributor.authorVaz, Daniela C.
dc.contributor.authorCardoso, Isabel
dc.contributor.authorSaraiva, Maria João M.
dc.contributor.authorBrito, Rui M. M.
dc.date.accessioned2019-10-30T10:03:59Z
dc.date.available2019-10-30T10:03:59Z
dc.date.issued2001
dc.date.updated2019-10-28T11:42:52Z
dc.description.abstractAmyloid fibril formation and deposition is a common feature of a wide range of fatal diseases including spongiform encephalopathies, Alzheimer's disease, and familial amyloidotic polyneuropathies (FAP), among many others. In certain forms of FAP, the amyloid fibrils are mostly constituted by variants of transthyretin (TTR), a homotetrameric plasma protein. Recently, we showed that transthyretin in solution may undergo dissociation to a non-native monomer, even under close to physiological conditions of temperature, pH, ionic strength, and protein concentration. We also showed that this non-native monomer is a compact structure, does not behave as a molten globule, and may lead to the formation of partially unfolded monomeric species and high molecular mass soluble aggregates (Quintas, A., Saraiva, M. J. M., and Brito, R. M. M. (1999) J. Biol. Chem. 274, 32943–32949). Here, based on aging experiments of tetrameric TTR and chemically induced protein unfolding experiments of the non-native monomeric forms, we show that tetramer dissociation and partial unfolding of the monomer precedes amyloid fibril formation. We also show that TTR variants with the least thermodynamically stable non-native monomer produce the largest amount of partially unfolded monomeric species and soluble aggregates under conditions that are close to physiological. Additionally, the soluble aggregates formed by the amyloidogenic TTR variants showed morphological and thioflavin-T fluorescence properties characteristic of amyloid. These results allowed us to conclude that amyloid fibril formation by some TTR variants might be triggered by tetramer dissociation to a compact non-native monomer with low conformational stability, which originates partially unfolded monomeric species with a high tendency for ordered aggregation into amyloid fibrils. Thus, partial unfolding and conformational fluctuations of molecular species with marginal thermodynamic stability may play a crucial role on amyloid formationin vivo.pt_PT
dc.description.versioninfo:eu-repo/semantics/publishedVersionpt_PT
dc.identifier.doi10.1074/jbc.M101024200
dc.identifier.other2-s2.0-0035920156
dc.identifier.slugcv-prod-179875
dc.identifier.urihttp://hdl.handle.net/10400.8/4259
dc.language.isoengpt_PT
dc.peerreviewedyespt_PT
dc.relationBMH4-CT98-3689pt_PT
dc.relationPRAXIS/SAU/1287/95pt_PT
dc.relationPRAXIS/SAU/14095/98pt_PT
dc.relationPRAXIS/SAU/1290/95pt_PT
dc.relationBD/3237/96pt_PT
dc.relationBD/15725/98pt_PT
dc.relationBIC/17015/98pt_PT
dc.relation.ispartofJournal of Biological Chemistryen_US
dc.titleTetramer Dissociation and Monomer Partial Unfolding Precedes Protofibril Formation in Amyloidogenic Transthyretin Variantspt_PT
dc.typejournal article
dspace.entity.typePublication
oaire.citation.endPage27213pt_PT
oaire.citation.issue29pt_PT
oaire.citation.startPage27207pt_PT
oaire.citation.titleJournal of Biological Chemistrypt_PT
oaire.citation.volume276pt_PT
person.familyNameBarroso de Moura Cipreste Vaz
person.givenNameDaniela
person.identifier.ciencia-id801A-7761-328C
person.identifier.orcid0000-0001-7562-4676
person.identifier.ridR-5243-2017
person.identifier.scopus-author-id6602838931
rcaap.cv.cienciaid801A-7761-328C | Daniela Maria Barroso de Moura Cipreste Vaz
rcaap.rightsopenAccesspt_PT
rcaap.typearticlept_PT
relation.isAuthorOfPublication518f12af-3297-4334-b00b-c06e17b2cf27
relation.isAuthorOfPublication.latestForDiscovery518f12af-3297-4334-b00b-c06e17b2cf27

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