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Inaugural Articles: Direct observation of dipolar couplings between distant protons in weakly aligned nucleic acids

机译:就职文章:弱对齐核酸中远距离质子之间的偶极偶合的直接观察

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摘要

Under conditions where macromolecules are aligned very weakly with respect to an external magnetic field, Brownian diffusion no longer averages internuclear dipole–dipole interactions to zero. The resulting residual dipolar coupling, although typically 3 orders of magnitude weaker than in a fully aligned sample, can readily be measured by solution NMR methods. To date, application of this idea has focused primarily on pairs of nuclei separated by one or two covalent bonds, where the internuclear separation is known and the measured dipolar coupling provides direct information on the orientation of the internuclear vector. A method is described that allows observation of dipolar interactions over much larger distances. By decoupling nearest-neighbor interactions, it is readily possible to observe direct dipolar interactions between protons separated by up to 12 Å. The approach is demonstrated for the DNA dodecamer d(CGCGAATTCGCG)2, where direct interactions are observed between protons up to three base pairs apart.
机译:在大分子相对于外部磁场非常弱地排列的条件下,布朗扩散不再将核间偶极-偶极相互作用平均为零。产生的残留偶极耦合,尽管通常比完全对准的样品弱3个数量级,但可以通过溶液NMR方法轻松测量。迄今为止,该思想的应用主要集中在被一个或两个共价键分开的成对的核对上,其中核间的分离是已知的,所测量的偶极偶合提供了有关核间载体取向的直接信息。描述了一种允许在更大的距离上观察偶极相互作用的方法。通过解耦最近邻相互作用,可以很容易地观察到质子之间的直接偶极相互作用,这些质子之间的间隔最大可达12。 DNA十二聚体d(CGCGAATTCGCG)2证实了该方法,其中在质子之间可观察到直接相互作用,质子之间最多可间隔三个碱基对。

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