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酵母苯丙氨酸转运核糖核酸(tRNA(Phe))和天冬氨酸转运核糖核酸(tRNA(Asp1))的质子交换与碱基对动力学

Proton exchange and basepair kinetics of yeast tRNA(Phe) and tRNA(Asp1).

作者信息

Choi B S, Redfield A G

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology, Taejon.

出版信息

J Biochem. 1995 Mar;117(3):515-20. doi: 10.1093/oxfordjournals.jbchem.a124738.

Abstract

Nuclear magnetic resonance measurements of proton exchange were performed on yeast tRNA(Phe) and yeast tRNA(Asp), at temperatures from 20 to 45 degrees C, in the presence of various levels of salt, phosphate, added magnesium, and pH. The dynamical changes of the tRNA molecule were interpreted, with the aid of firmly established assignments and the use of the saturation recovery technique. In tRNA(Phe), the exchange rates in zero magnesium indicated early melting of the acceptor stem, tertiary structure, and D stem. However, in the presence of even low levels of magnesium the D stem remained intact up to high temperature, stabilized by a Mg2+ ion. A similar unfolding sequence was observed in tRNA(Asp). The difference between these two tRNAs was the thermal behavior of the tertiary resonance U8-A14. In tRNA(Phe), this base pair showed sharp rate increases between 32 and 39 degrees C. However, in tRNA(Asp), it remained intact up to 36 degrees C and disappeared at 39 degrees C, even if there was not important kinetic broadening. By measuring the temperature dependence of the exchange rates, we obtained an activation energy of 40-60 kcal/mol for all the imino protons of yeast tRNA(Phe) in zero magnesium. The same activation energy was obtained for tRNA(Phe) with equimolar concentration of magnesium. By investigation of the dependence of the exchange rates of these imino protons on solution conditions, we observed the transition from kop rate limiting in the absence of magnesium to kex rate limiting in the presence of magnesium.

摘要

在20至45摄氏度的温度范围内,于存在不同水平的盐、磷酸盐、添加的镁以及不同pH值的条件下,对酵母苯丙氨酸转运核糖核酸(tRNA(Phe))和酵母天冬氨酸转运核糖核酸(tRNA(Asp))进行了质子交换的核磁共振测量。借助已确定的归属以及饱和恢复技术的运用,对tRNA分子的动态变化进行了解释。在tRNA(Phe)中,零镁条件下的交换速率表明受体茎、三级结构和D茎早期解链。然而,即使存在低水平的镁,D茎在高温下仍保持完整,由一个Mg2+离子稳定。在tRNA(Asp)中观察到了类似的解折叠序列。这两种tRNA之间的差异在于三级共振U8 - A14的热行为。在tRNA(Phe)中,这个碱基对在32至39摄氏度之间显示出急剧的速率增加。然而,在tRNA(Asp)中,它在36摄氏度之前保持完整,并在39摄氏度时消失,即使没有明显的动力学展宽。通过测量交换速率的温度依赖性,我们在零镁条件下获得了酵母tRNA(Phe)所有亚氨基质子的活化能为40 - 60千卡/摩尔。对于等摩尔浓度镁的tRNA(Phe)也获得了相同的活化能。通过研究这些亚氨基质子交换速率对溶液条件的依赖性,我们观察到了从无镁时kop速率限制到有镁时kex速率限制的转变。

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