2018
DOI: 10.1016/j.ymeth.2018.03.014
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3D structure determination of amyloid fibrils using solid-state NMR spectroscopy

Abstract: The amyloid fold is structurally characterized by a typical cross-β architecture, which is under debate to represent an energy-favourable folding state that many globular or natively unfolded proteins can adopt. Being initially solely associated with amyloid fibrils observed in the propagation of several neurodegenerative disorders, the discovery of non-pathological (or "functional") amyloids in many native biological processes has recently further intensified the general interest invested in those cross-β sup… Show more

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Cited by 71 publications
(50 citation statements)
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“…Protein structure determination by magic‐angle spinning (MAS) NMR spectroscopy relies largely on experimental interatomic distance constraints. These interatomic distance constraints are extracted from 13 C‐, 15 N‐, and 1 H‐based correlations, which yield distances of up to 6–8 Å . Although this approach has been successfully employed to derive the structures of a number of proteins, additional information is generally required to determine the quaternary structure or supramolecular organization of multidomain proteins and protein assemblies.…”
Section: Figurementioning
confidence: 99%
“…Protein structure determination by magic‐angle spinning (MAS) NMR spectroscopy relies largely on experimental interatomic distance constraints. These interatomic distance constraints are extracted from 13 C‐, 15 N‐, and 1 H‐based correlations, which yield distances of up to 6–8 Å . Although this approach has been successfully employed to derive the structures of a number of proteins, additional information is generally required to determine the quaternary structure or supramolecular organization of multidomain proteins and protein assemblies.…”
Section: Figurementioning
confidence: 99%
“…Cross-polarization 13 C experiment (Fig. 7C) revealed a well-resolved spectrum, implying a 359 high structural order at the local level (Loquet et al 2018a). In line with the X-ray diffraction analysis, 360 solid-state NMR 13 C chemical shifts of BASS1 indicate a protein conformation rich in -sheet 361 secondary structure, illustrated with a high field effect of the carbonyl region indicative of -sheet 362 structure (Wang and Jardetzky 2002).…”
Section: Bass1 and Bass3 Form Fibrils In Vitro 341mentioning
confidence: 93%
“…High-resolution structural biology techniques such as X-ray crystallography and NMR spectroscopy (solution and solid-state) offer incredible insights to various intermediates at atomic level and thus are inevitable methods to study crystallin structure and aggregation [16,17].…”
Section: Accepted Articlementioning
confidence: 99%