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Contributions of the PO ester and CO torsion angles of the phosphate group to 31P-nuclear magnetic shielding constant in nucleic acids: Theoretical and experimental study of model compounds

✍ Scribed by Claude Giessner-Prettre; Bernard Pullman; Fernando Ribas Parado; Doris M. Cheng; Virginia Iuorno; Paul O. P. Ts'O


Publisher
Wiley (John Wiley & Sons)
Year
1984
Tongue
English
Weight
685 KB
Volume
23
Category
Article
ISSN
0006-3525

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✦ Synopsis


The magnetic shielding constant of the nucleus of the dimethylphosphate anion is calculated by an eb initio method for different values of the torsion angles about the PO ester bond and different orientations of the methyl groups. The results obtained tend to show that both types of conformational parameters contribute to the value of o3Ip. The largest shielding is obtained when the methyl groups are staggered with respect to the PO bond; the smallest, for the eclipsed arrangement. Measurements carried out on the 16 deoxyribodinucleoside monophosphates show that in the majority of cases, o3lP is shifted toward lower field for the dimers having large values of : < J p ~3 , and :Vp~ycs-,. The theoretical results are discussed in relation to experimental data for polynucleotides and nucleic acids.