3D structure determination of amyloid fibrils using solid-state NMR spectroscopy.
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Summary
Solid-state NMR spectroscopy has granted breakthroughs in structural investigations on amyloid fibrils ranging from the assessment of the impact of polymorphism in disease development to the 3D atomic structure determination of amyloids.
- Type
- review
- Published
- 2018-04-01
- Cited by
- 70
- References
- 157
- Access
- Open access
- OpenAlex
- https://openalex.org/W2795894630
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4874406
Keywords
Fibril, Amyloid (mycology), Amyloid fibril, Chemistry, Solid-state nuclear magnetic resonance
References
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- Targeting Protein Aggregation for the Treatment of Degenerative Diseases
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- Intermolecular Alignment in β2-Microglobulin Amyloid Fibrils
- ARIA for solution and solid-state NMR.
- Solid-State NMR Spectroscopy of Protein Complexes
- Structural Insight into an Alzheimer’s Brain-Derived Spherical Assembly of Amyloid β by Solid-State NMR
- Solid-state NMR: An emerging technique in structural biology of self-assemblies.
- Structure, function, and amyloidogenesis of fungal prions: filament polymorphism and prion variants.
- Molecular structure of monomorphic peptide fibrils within a kinetically trapped hydrogel network
- Amyloid Polymorphism: Structural Basis and Neurobiological Relevance
- Solid phase protein chemical synthesis.
- Secondary chemical shifts in immobilized peptides and proteins: A qualitative basis for structure refinement under Magic Angle Spinning
- Supramolecular interactions probed by 13C-13C solid-state NMR spectroscopy.
- New methods for chemical protein synthesis.
- Aβ(1–42) Fibril Structure Illuminates Self-recognition and Replication of Amyloid in Alzheimer’s
- General structural motifs of amyloid protofilaments
- Recommendations of the wwPDB NMR Validation Task Force
- Structural investigations of molecular machines by solid-state NMR.
- Structure calculation from unambiguous long-range amide and methyl 1H-1H distance restraints for a microcrystalline protein with MAS solid-state NMR spectroscopy.
Cited by
- Structure and Dynamics in the Nucleosome Revealed by Solid-State NMR.
- Fast Magic Angle Spinning 19F NMR of HIV-1 Capsid Protein Assemblies
- Fast Magic‐Angle Spinning 19 F NMR Spectroscopy of HIV‐1 Capsid Protein Assemblies
- Mechanistic insights into microsecond timescale motion of solid proteins using complementary 15N and 1H relaxation dispersion techniques
- Aggregate Polymorphism in Protein Deposition Diseases: Investigations by Magic Angle Spinning Solid State NMR and Transmission Electron Microscopy
- Intrinsically disordered proteins in the formation of functional amyloids from bacteria to humans.
- Two decades of progress in structural and dynamic studies of amyloids by solid-state NMR
- Molecular architecture of bacterial amyloids in Bacillus biofilms
- Paramagnetic solid-state NMR of proteins.
- Proton-Detected Polarization Optimized Experiments (POE) Using Ultrafast Magic Angle Spinning Solid-State NMR: Multi-acquisition of Membrane Protein Spectra
- Structural dissection of amyloid aggregates of TDP‐43 and its C‐terminal fragments TDP‐35 and TDP‐16
- Identification of NLR-associated amyloid signaling motifs in filamentous bacteria
- Combining molecular dynamics simulations and experimental analyses in protein misfolding.
- Structure of a Protein–RNA Complex by Solid‐State NMR Spectroscopy
- High-Resolution Probing of Early Events in Amyloid-β Aggregation Related to Alzheimer’s Disease
- Multi-Receiver Solid-State NMR using Polarization Optimized Experiments (POE) at Ultrafast Magic Angle Spinning
- Liquid-liquid phase separation in biology: mechanisms, physiological functions and human diseases
- Solid-state NMR spectroscopy for characterization of RNA and RNP complexes.
- Design and synthesis of β-strand-fixed peptides inhibiting aggregation of amyloid β-protein.
- Bicelles and nanodiscs for biophysical chemistry.
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