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  • Solution conformation  (1)
  • Sugar conformation  (1)
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  • 1
    ISSN: 1432-1017
    Keywords: Trp promoter ; Solution conformation ; Transversion mutation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Physics
    Notes: Abstract The majority of the 1H NMR resonances of the protons in a tetradecamer containing the —35 region of the trp promoter d(GCTGTTGACAATTA): d(TAATTGTCAACAGC) and in the TA transversion have been assigned. The conformational properties of the nucleotides have been determined and compared in the two duplexes. Analysis of spin-spin coupling and NOES shows that all sugar puckers are in the south domain (i.e. near C2′ endo) and the glycosidic torsion angles are anti (χ≈110°). The NMR data are consistent with the duplex being in the B family of conformations. Significant differences in chemical shifts between the two molecules were observed only for nearest neighbours to the transversion site, suggesting the absence of long range conformational effects. This was confirmed by the similarity of coupling constants and NOEs. Other properties are also not greatly affected at positions more than two base pairs from the mutation site. These results are consistent with the hypothesis that unconstrained oligonucleotides are highly flexible, and can readily accommodate significant perturbations of the local structure, such as a transversion.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-5001
    Keywords: Sugar conformation ; Scalar coupling ; NOEs ; ATF-2
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Summary Different methods for determining sugar conformations in large oligonucleotides have been evaluated using both J-coupling and NOE data. In order to simulate COSY spectra, reliable estimates of line widths are required. We have measured T1p (=T2) values for a large number of protons of the hexadecamer d(CATGTGACGTCACATG)2 using a new two-dimensional NMR experiment (T1RHOSY) to provide baseline information for the simulations. Both DQF-COSY and P.E.COSY cross-peaks have been systematically simulated as a function of line width, digitisation and signal-to-noise ratio. We find that for longer correlation times (τ≥5 ns), where line widths are comparable to or larger than active couplings, only {ie190-1} is reasonably accurately determined (within ±1 Hz). Under these conditions, additional information is needed to determine the sugar conformation. We have used apparent distances H1′-2-H4′ and H2″-H4′, which provide a range of Ps over an interval of ca. 20°. Complete analysis of time courses for intraresidue NOEs, with and without coupling constants, has also been evaluated for determining nucleotide conformations. Whereas Ps is poorly determined in the absence of both intrasugar NOEs and coupling constants, the range of solutions is decreased when intrasugar NOEs and {ie190-2} are also available. DQF-COSY, P.E.COSY and NOESY spectra at different mixing times of the hexadecamer d(CATGTGACGTCACATG)2 were recorded at three temperatures. A detailed analysis of the NOEs and coupling constants provided estimates of the sugar conformations in the hexadecamer. At 50 °C, the sugar conformations are well determined by the scalar and dipolar data, with pseudorotation phase angles of 126–162° and mole fractions of the S conformation (fs) of 0.86±0.05. There was no statistically significant difference between fs for the purines and the pyrimidines, although there was a small tendency for Ps of the purines to be larger than those of the pyrimidines. At 25 °C, the sugar conformations were much less well determined, although the estimates of fs were the same within experimental error as at 50 °C. The experimental and theoretical results provide guidelines for the limits of conformational analysis of nucleic acids based on homonuclear NMR methods.
    Type of Medium: Electronic Resource
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