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Xia Youlin; Arrowsmith, Cheryl H.; Szyperski, Thomas, E-mail: carrow@oci.utoronto.ca, E-mail: szypersk@chem.buffalo.edu2002
AbstractAbstract
[en] Here we present a novel suite of projected 4D triple-resonance NMR experiments for efficient sequential assignment of polypeptide backbone chemical shifts in 13C/15N doubly labeled proteins. In the 3D HNN[CAHA] and 3D HNN(CO)[CAHA] experiments, the 13Cα and 1Hα chemical shifts evolve in a common dimension and are simultaneously detected in quadrature. These experiments are particularly useful for the assignment of glycine-rich polypeptide segments. Appropriate setting of the 1H radiofrequency carrier allows one to place cross peaks correlating either backbone 15N/1HN/13Cα or 15N/1HN/1Hα chemical shifts in separate spectral regions. Hence, peak overlap is not increased when compared with the conventional 3D HNNCA and HNN(CA)HA. 3D HNN[CAHA] and 3D HNN(CO)[CAHA] are complemented by 3D reduced-dimensionality (RD) HNN COCA and HNN CACO, where 13Cα and 13C' chemical shifts evolve in a common dimension. The 13Cα shift is detected in quadrature, which yields peak pairs encoding the 13C' chemical shift in an in-phase splitting. This suite of four experiments promises to be of value for automated high-throughput NMR structure determination in structural genomics, where the requirement to independently sample many indirect dimensions in a large number of NMR experiments may prevent one from accurately adjusting NMR measurement times to spectrometer sensitivity
Primary Subject
Source
Copyright (c) 2002 Kluwer Academic Publishers; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Journal of Biomolecular NMR; ISSN 0925-2738;
; v. 24(1); p. 41-50

Country of publication
AMINO ACIDS, CARBON COMPOUNDS, CARBON ISOTOPES, CARBON OXIDES, CARBOXYLIC ACIDS, CHALCOGENIDES, ELECTROMAGNETIC RADIATION, EVEN-ODD NUCLEI, HYDROGEN ISOTOPES, ISOTOPES, LIGHT NUCLEI, MAGNETIC RESONANCE, MEASURING INSTRUMENTS, NITROGEN ISOTOPES, NUCLEI, ODD-EVEN NUCLEI, ORGANIC ACIDS, ORGANIC COMPOUNDS, OXIDES, OXYGEN COMPOUNDS, PEPTIDES, PROTEINS, RADIATIONS, RESONANCE, STABLE ISOTOPES
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