Impact of nucleic acid self-alignment in a strong magnetic field on the interpretation of indirect spin-spin interactions.
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ABSTRACT: Heteronuclear and homonuclear direct (D) and indirect (J) spin-spin interactions are important sources of structural information about nucleic acids (NAs). The Hamiltonians for the D and J interactions have the same functional form; thus, the experimentally measured apparent spin-spin coupling constant corresponds to a sum of J and D. In biomolecular NMR studies, it is commonly presumed that the dipolar contributions to Js are effectively canceled due to random molecular tumbling. However, in strong magnetic fields, such as those employed for NMR analysis, the tumbling of NA fragments is anisotropic because the inherent magnetic susceptibility of NAs causes an interaction with the external magnetic field. This motional anisotropy is responsible for non-zero D contributions to Js. Here, we
SUBMITTER: Vavrinska A
PROVIDER: S-EPMC4742510 | biostudies-literature | 2016 Jan
REPOSITORIES: biostudies-literature
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