Department of Chemistry and Biochemistry, Center for Biomolecular Structure and Organization, University of Maryland, College Park, MD 20742-3360, USA.
J Biomol NMR. 2012 Feb;52(2):103-14. doi: 10.1007/s10858-011-9586-1. Epub 2011 Nov 29.
Characterization of the structure and dynamics of nucleic acids by NMR benefits significantly from position specifically labeled nucleotides. Here an E. coli strain deficient in the transketolase gene (tktA) and grown on glucose that is labeled at different carbon sites is shown to facilitate cost-effective and large scale production of useful nucleotides. These nucleotides are site specifically labeled in C1' and C5' with minimal scrambling within the ribose ring. To demonstrate the utility of this labeling approach, the new site-specific labeled and the uniformly labeled nucleotides were used to synthesize a 36-nt RNA containing the catalytically essential domain 5 (D5) of the brown algae group II intron self-splicing ribozyme. The D5 RNA was used in binding and relaxation studies probed by NMR spectroscopy. Key nucleotides in the D5 RNA that are implicated in binding Mg(2+) ions are well resolved. As a result, spectra obtained using selectively labeled nucleotides have higher signal-to-noise ratio compared to those obtained using uniformly labeled nucleotides. Thus, compared to the uniformly (13)C/(15)N-labeled nucleotides, these specifically labeled nucleotides eliminate the extensive (13)C-(13)C coupling within the nitrogenous base and ribose ring, give rise to less crowded and more resolved NMR spectra, and accurate relaxation rates without the need for constant-time or band-selective decoupled NMR experiments. These position selective labeled nucleotides should, therefore, find wide use in NMR analysis of biologically interesting RNA molecules.
通过 NMR 对核酸的结构和动态进行表征,可以从位置特异性标记的核苷酸中获得显著的收益。这里展示了一株缺乏转酮醇酶基因(tktA)的大肠杆菌菌株,在葡萄糖上生长,该葡萄糖在不同的碳位标记,这有利于经济高效地大规模生产有用的核苷酸。这些核苷酸在 C1'和 C5'位进行了位置特异性标记,核糖环内的最小干扰。为了证明这种标记方法的实用性,使用新的位点特异性标记和均匀标记的核苷酸合成了含有催化必需结构域 5(D5)的 36 个核苷酸 RNA 褐藻组 II 内含子自我剪接核酶。使用 NMR 光谱学探测 D5 RNA 的结合和松弛研究。D5 RNA 中与结合 Mg(2+)离子有关的关键核苷酸得到了很好的分辨。结果,使用选择性标记核苷酸获得的光谱与使用均匀标记核苷酸获得的光谱相比,具有更高的信噪比。因此,与均匀(13)C/(15)N 标记的核苷酸相比,这些特异性标记的核苷酸消除了含氮碱基和核糖环内的广泛(13)C-(13)C 偶联,产生了更少拥挤和更分辨的 NMR 光谱,以及无需进行恒时或带选择性去耦 NMR 实验即可获得准确的弛豫率。因此,这些位置选择性标记的核苷酸应在对生物感兴趣的 RNA 分子的 NMR 分析中得到广泛应用。