Kan L S, Ts'o P O
Nucleic Acids Res. 1977;4(5):1633-47. doi: 10.1093/nar/4.5.1633.
The hydrogen-bonded NH resonances of Baker's yeast tRNAphe in H2O solution with Mg++ have been measured by a 360 MHz spectrometer at 23 degrees C. Totally, fifteen peaks and one shoulder can be resolved which represent 25 +/- 1 protons. Based on the refined atomic coordinates of the tRNAphe in the orthorhombic crystal, on the recent advances in the distance dependence of the ring-current magnetic field effects and on the adopted values for the isolated hydrogen-bonded NH resonances, a computed spectrum consisting of 23 protons was constructed. A quantitative comparison by computer was made between the computed spectrum and the spectrum simulated from the observed spectrum. These two spectra are closely similar but not identical. We suggest that the conformation of yeast tRNAphe in aqueous solution is closely similar but not identical to that found in the crystal, especially in the T psi C region and D region. Also the NH resonances in 3-4 proposed hydrogen bonds (most likely for tertiary structure) may exchange very rapidly in aqueous solution.
在23摄氏度下,用一台360兆赫的光谱仪测量了在含有Mg++的H2O溶液中面包酵母苯丙氨酸转运核糖核酸(tRNAphe)的氢键合NH共振。总共可以分辨出15个峰和1个肩峰,它们代表25±1个质子。基于正交晶体中tRNAphe的精确原子坐标、环电流磁场效应距离依赖性的最新进展以及孤立氢键合NH共振的采用值,构建了一个由23个质子组成的计算光谱。通过计算机对计算光谱和从观测光谱模拟得到的光谱进行了定量比较。这两个光谱非常相似但并不完全相同。我们认为,酵母tRNAphe在水溶液中的构象与晶体中的构象非常相似但并不完全相同,特别是在TψC区域和D区域。此外,3 - 4个推测的氢键(很可能用于三级结构)中的NH共振在水溶液中可能交换得非常快。