Publication | Open Access
Amyloid Hydrogen Bonding Polymorphism Evaluated by <sup>15</sup>N{<sup>17</sup>O}REAPDOR Solid-State NMR and Ultra-High Resolution Fourier Transform Ion Cyclotron Resonance Mass Spectrometry
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Citations
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References
2016
Year
Molecular BiologyPeptide ScienceAnalytical UltracentrifugationProtein FoldingReapdor Solid-state NmrProtein MisfoldingMolecular RecognitionN Hydrogen BondBiophysicsBiochemistryBiomolecular AnalysisSolution Nmr SpectroscopyAβ PeptidesMolecular ModelingNatural SciencesHydrogen BondProtein NmrMedicineSmall MoleculesSolid-state Nmr
A combined approach, using Fourier transform ion cyclotron resonance mass spectrometry (FTICR-MS) and solid-state NMR (Nuclear Magnetic Resonance), shows a high degree of polymorphism exhibited by Aβ species in forming hydrogen-bonded networks. Two Alzheimer's Aβ peptides, Ac-Aβ(16-22)-NH2 and Aβ(11-25), selectively labeled with (17)O and (15)N at specific amino acid residues were investigated. The total amount of peptides labeled with (17)O as measured by FTICR-MS enabled the interpretation of dephasing observed in (15)N{(17)O}REAPDOR solid-state NMR experiments. Specifically, about one-third of the Aβ peptides were found to be involved in the formation of a specific >C═(17)O···H-(15)N hydrogen bond with their neighbor peptide molecules, and we hypothesize that the rest of the molecules undergo ± n off-registry shifts in their hydrogen bonding networks.
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