Author | Radamaker, Lynn | dc.contributor.author |
Author | Lin, Yin-Hsi | dc.contributor.author |
Author | Annamalai, Karthikeyan | dc.contributor.author |
Author | Huhn, Stefanie | dc.contributor.author |
Author | Hegenbart, Ute | dc.contributor.author |
Author | Schönland, Stefan | dc.contributor.author |
Author | Fritz, Günter | dc.contributor.author |
Author | Schmidt, Matthias | dc.contributor.author |
Author | Fändrich, Marcus | dc.contributor.author |
Date of accession | 2023-06-02T09:16:21Z | dc.date.accessioned |
Available in OPARU since | 2023-06-02T09:16:21Z | dc.date.available |
Date of first publication | 2019-03-20 | dc.date.issued |
Abstract | Amyloid fibrils derived from antibody light chains are key pathogenic agents in systemic AL amyloidosis. They can be deposited in multiple organs but cardiac amyloid is the major risk factor of mortality. Here we report the structure of a λ1 AL amyloid fibril from an explanted human heart at a resolution of 3.3 Å which we determined using cryo-electron microscopy. The fibril core consists of a 91-residue segment presenting an all-beta fold with ten mutagenic changes compared to the germ line. The conformation differs substantially from natively folded light chains: a rotational switch around the intramolecular disulphide bond being the crucial structural rearrangement underlying fibril formation. Our structure provides insight into the mechanism of protein misfolding and the role of patient-specific mutations in pathogenicity. | dc.description.abstract |
Language | en | dc.language.iso |
Publisher | Universität Ulm | dc.publisher |
License | CC BY 4.0 International | dc.rights |
Link to license text | https://creativecommons.org/licenses/by/4.0/ | dc.rights.uri |
Keyword | Cryoelectron microscopy | dc.subject |
Keyword | Protein aggregation | dc.subject |
Dewey Decimal Group | DDC 570 / Life sciences | dc.subject.ddc |
LCSH | Amyloidosis | dc.subject.lcsh |
Title | Cryo-EM structure of a light chain-derived amyloid fibril from a patient with systemic AL amyloidosis | dc.title |
Resource type | Wissenschaftlicher Artikel | dc.type |
Version | publishedVersion | dc.description.version |
DOI | http://dx.doi.org/10.18725/OPARU-48914 | dc.identifier.doi |
URN | http://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-48990-3 | dc.identifier.urn |
GND | Amyloidose | dc.subject.gnd |
Faculty | Fakultät für Naturwissenschaften | uulm.affiliationGeneral |
Institution | Institut für Proteinbiochemie | uulm.affiliationSpecific |
Peer review | ja | uulm.peerReview |
DCMI Type | Text | uulm.typeDCMI |
Category | Publikationen | uulm.category |
DOI of original publication | 10.1038/s41467-019-09032-0 | dc.relation1.doi |
Source - Title of source | Nature Communications | source.title |
Source - Place of publication | Nature Research | source.publisher |
Source - Volume | 10 | source.volume |
Source - Year | 2019 | source.year |
Source - Article number | 1103 | source.articleNumber |
Source - eISSN | 2041-1723 | source.identifier.eissn |
Community | Fakultät für Naturwissenschaften | uulm.community |
WoS | 000461756700001 | uulm.identifier.wos |
Bibliography | uulm | uulm.bibliographie |
Is Supplemented By | https://static-content.springer.com/esm/art%3A10.1038%2Fs41467-019-09032-0/MediaObjects/41467_2019_9032_MOESM1_ESM.pdf | dc.relation.isSupplementedBy |
Is Supplemented By | https://static-content.springer.com/esm/art%3A10.1038%2Fs41467-019-09032-0/MediaObjects/41467_2019_9032_MOESM2_ESM.pdf | dc.relation.isSupplementedBy |
DFG project uulm | SFB 1279 Teilprojekt A03 / Mechanismus und Struktur von Peptidfibrillen, die Virusinfektionen beeinflussen / DFG / 316249678 | uulm.projectDFG |
DFG project uulm | Strukturelle Analyse von SAA-Amyloidfibrillen mittels kryo-EM und NMR / DFG / 313913757 [SCHM 3276/1] | uulm.projectDFG |