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酵母苯丙氨酸转移核糖核酸亚氨基质子的核磁共振与核Overhauser效应研究

Nuclear magnetic resonance and nuclear Overhauser effect study of yeast phenylalanine transfer ribonucleic acid imino protons.

作者信息

Johnston P D, Redfield A G

出版信息

Biochemistry. 1981 Mar 3;20(5):1147-56. doi: 10.1021/bi00508a016.

Abstract

Results directed primarily toward spectral assignment and nuclear spin dynamics are described for yeast tRNAPhe in 0.1 M NaCl, pH 7. Magnesium titrations were performed. Changes in the spectrum occur for Mg2+/tRNA ratios of about 2 and above 10. Difference spectroscopy between 43 and 29 degrees C in zero Mg2+ concentration, together with prior identification of the GU4 acceptor stem base pair, indicates early acceptor melting and is used to identify acceptor resonances. Transport of spin energy (spin diffusion) is described in tRNA together with a summary of relevant experiments. A survey of nuclear Overhauser effects (NOE's) between imino and aromatic and amino protons is included, together with some recent conclusions based on methyl NOE's and experiments with tRNAs deuterated at the purine C8 position. Assignment of the imino NMR spectrum on the basis of these and previous data is reviewed and discussed in detail. Preliminary distance estimates based on the NOE for AU and GU4 base pairs are in reasonable agreement with the expected distances.

摘要

本文描述了在0.1M NaCl、pH 7条件下酵母苯丙氨酸转运核糖核酸(tRNAPhe)的主要光谱归属和核自旋动力学相关结果。进行了镁滴定实验。当镁离子与转运核糖核酸的比例约为2及高于10时,光谱会发生变化。在零镁离子浓度下,43摄氏度和29摄氏度之间的差示光谱,结合之前对GU4受体茎碱基对的鉴定,表明受体早期解链,并用于识别受体共振峰。文中描述了转运核糖核酸中的自旋能量传递(自旋扩散)以及相关实验总结。包括对亚氨基与芳香族及氨基质子之间核Overhauser效应(NOE)的综述,以及基于甲基NOE和嘌呤C8位置氘代转运核糖核酸实验得出的一些最新结论。基于这些数据及之前的数据对亚氨基核磁共振光谱的归属进行了回顾并详细讨论。基于NOE对AU和GU4碱基对的初步距离估计与预期距离合理一致。

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