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一种用于确定¹³C/¹⁵N标记核酸中质子、碳和氮共振峰归属的有效方法。

An efficient procedure for assignment of the proton, carbon and nitrogen resonances in 13C/15N labeled nucleic acids.

作者信息

Nikonowicz E P, Pardi A

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.

出版信息

J Mol Biol. 1993 Aug 20;232(4):1141-56. doi: 10.1006/jmbi.1993.1466.

Abstract

An efficient method is presented for the assignment of the proton, carbon, and nitrogen resonances in the NMR spectra of isotopically labeled nucleic acids. The assignment strategy starts by identifying all protons and carbons belonging to the same sugar ring through application of a set of 2D or 3D heteronuclear HCCH NMR experiments. Next the individual sugar rings are connected to their corresponding bases through intra-residue 1H-1H nuclear Overhauser effects (NOEs) observed in a 3D (1H, 13C, 1H) NOESY-HMQC experiment. Sequential NOE connectivities observed in this experiment are then used to assign each residue in the nucleotide sequence. The imino protons and nitrogens, and the cytidine amino protons and nitrogens, are assigned by 2D (15N, 1H) HMQC and 3D (1H, 15N, 1H) NOESY-HMQC experiments in H2O. This assignment procedure is illustrated on the 99% 13C/15N labeled RNA duplex r(GGCGCUUGCGUC)2. The application of these multi-dimensional heteronuclear magnetic resonance experiments enormously simplifies the resonance assignment of nucleic acids and allows assignment of many more protons, carbons and nitrogens than was possible using standard techniques on unlabeled molecules. Since a larger percentage of the protons can now be assigned by these experiments, much more NMR structural information can be obtained which will significantly extend the size limit for solution structure determinations of RNAs.

摘要

本文提出了一种用于确定同位素标记核酸核磁共振谱中质子、碳和氮共振信号归属的有效方法。该归属策略首先通过应用一组二维或三维异核HCCH核磁共振实验,识别属于同一糖环的所有质子和碳。接下来,通过在三维(1H,13C,1H)NOESY-HMQC实验中观察到的残基内1H-1H核Overhauser效应(NOE),将各个糖环与其相应的碱基相连。然后,利用该实验中观察到的顺序NOE连接性来确定核苷酸序列中的每个残基。在H2O中,通过二维(15N,1H)HMQC和三维(1H,15N,1H)NOESY-HMQC实验确定亚氨基质子和氮以及胞嘧啶氨基质子和氮的归属。在99% 13C/15N标记的RNA双链体r(GGCGCUUGCGUC)2上展示了这种归属过程。这些多维异核磁共振实验的应用极大地简化了核酸的共振归属,并且与使用未标记分子的标准技术相比,能够确定更多的质子、碳和氮的归属。由于现在通过这些实验可以确定更大比例的质子,因此可以获得更多的核磁共振结构信息,这将显著扩展RNA溶液结构测定的尺寸极限。

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