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用于关联15N、13C标记的RNA寡核苷酸中碱基和糖基共振的二维和三维HCN实验。

Two- and three-dimensional HCN experiments for correlating base and sugar resonances in 15N,13C-labeled RNA oligonucleotides.

作者信息

Sklenár V, Peterson R D, Rejante M R, Feigon J

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles 90024.

出版信息

J Biomol NMR. 1993 Nov;3(6):721-7. doi: 10.1007/BF00198375.

Abstract

New 2D and 3D 1H-13C-15N triple resonance experiments are presented which allow unambiguous assignments of intranucleotide H1'-H8(H6) connectivities in 13C- and 15N-labeled RNA oligonucleotides. Two slightly different experiments employing double INEPT forward and back coherence transfers are optimized to obtain the H1'-C1'-N9/N1 and H8/H6-C8/C6-N9/N1 connectivities, respectively. The correlation of H1' protons to glycosidic nitrogens N9/N1 is obtained in a nonselective fashion. To correlate H8/H6 with their respective glycosidic nitrogens, selective 13C-refocusing and 15N-inversion pulses are applied to optimize the magnetization transfers along the desired pathway. The approach employs the heteronuclear one-bond spin-spin interactions and allows the 2D 1H-15N and 3D 1H-13C-15N chemical shift correlation of nuclei along and adjacent to the glycosidic bond. Since the intranucleotide correlations obtained are based exclusively on through-bond scalar interactions, these experiments resolve the ambiguity of intra- and internucleotide H1'-H8(H6) assignments obtained from the 2D NOESY spectra. These experiments are applied to a 30-base RNA oligonucleotide which contains the binding site for Rev protein from HIV.

摘要

本文介绍了新的二维和三维¹H-¹³C-¹⁵N三共振实验,这些实验能够明确指定¹³C和¹⁵N标记的RNA寡核苷酸中核苷酸内H1'-H8(H6)的连接关系。优化了两个采用双INEPT正向和反向相干转移的略有不同的实验,分别获得H1'-C1'-N9/N1和H8/H6-C8/C6-N9/N1的连接关系。以非选择性方式获得H1'质子与糖苷氮N9/N1的相关性。为了使H8/H6与其各自的糖苷氮相关联,应用选择性¹³C重聚焦和¹⁵N反转脉冲来优化沿所需路径的磁化转移。该方法利用了异核一键自旋-自旋相互作用,并允许沿着糖苷键及其相邻位置的原子核进行二维¹H-¹⁵N和三维¹H-¹³C-¹⁵N化学位移相关分析。由于所获得的核苷酸内相关性完全基于通过键的标量相互作用,这些实验解决了从二维NOESY谱获得的核苷酸内和核苷酸间H1'-H8(H6)归属的模糊性。这些实验应用于一个30个碱基的RNA寡核苷酸,该寡核苷酸包含来自HIV的Rev蛋白的结合位点。

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