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- W2019178773 abstract "The use of proton-proton nuclear Overhauser enhancement (NOE) distance information for identification of polypeptide secondary structures in non-crystalline proteins was investigated by stereochemical studies of standard secondary structures and by statistical analyses of the secondary structures in the crystal conformations of a group of globular proteins. Both regular helix and beta-sheet secondary structures were found to contain a dense network of short 1H-1H distances. The results obtained imply that the combined information on all these distances obtained from visual inspection of the two-dimensional NOE (NOESY) spectra is sufficient for determination of the helical and beta-sheet secondary structures in small globular proteins. Furthermore, cis peptide bonds can be identified from unique, short sequential proton-proton distances. Limitations of this empirical approach are that the exact start or end of a helix may be difficult to define when the adjoining residues form a tight turn, and that unambiguous identification of tight turns can usually be obtained only in the hairpins of antiparallel beta-structures. The short distances between protons in pentapeptide segments of the different secondary structures have been tabulated to provide a generally applicable guide for the analysis of NOESY spectra of proteins." @default.
- W2019178773 created "2016-06-24" @default.
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- W2019178773 date "1984-12-01" @default.
- W2019178773 modified "2023-10-16" @default.
- W2019178773 title "Polypeptide secondary structure determination by nuclear magnetic resonance observation of short proton-proton distances" @default.
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- W2019178773 doi "https://doi.org/10.1016/0022-2836(84)90034-2" @default.
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