Agris P F, Guenther R, Sochacka E, Newman W, Czerwińska G, Liu G, Ye W, Malkiewicz A
Department of Biochemistry, North Carolina State University, Raleigh 27695-7622, USA.
Acta Biochim Pol. 1999;46(1):163-72.
The determination of the structural and functional contributions of natural modified nucleosides to tRNA has been limited by lack of an approach that can systematically incorporate the modified units. We have produced a number of oligonucleotide analogs, of the anticodon of yeast tRNA(Phe) by, combining standard automated synthesis for the major nucleosides with specialty chemistries for the modified nucleosides. In this study, both naturally occurring and unnatural modified nucleotides were placed in native contexts. Each oligonucleotide was purified and the nucleoside composition determined to validate the chemistry. The RNAs were denatured and analyzed to determine the van't Hoff thermodynamic parameters. Here, we report the individual thermodynamic contributions for Cm, Gm, m1G, m5C, psi. In addition m5m6U, m1psi, and m3psi, were introduced to gain additional understanding of the physicochemical contribution of psi and m5C at an atomic level. These oligonucleotides demonstrate that modifications have measurable thermodynamic contributions and that loop modifications have global contributions.
由于缺乏一种能够系统地引入修饰单元的方法,天然修饰核苷对tRNA的结构和功能贡献的确定受到了限制。我们通过将主要核苷的标准自动化合成与修饰核苷的特殊化学方法相结合,制备了多种酵母tRNA(Phe)反密码子的寡核苷酸类似物。在本研究中,天然存在的和非天然修饰的核苷酸都被置于天然环境中。每个寡核苷酸都经过纯化,并确定核苷组成以验证化学方法。将RNA变性并进行分析以确定范特霍夫热力学参数。在此,我们报告了Cm、Gm、m1G、m5C、假尿苷(psi)的个体热力学贡献。此外,引入了m5m6U、m1psi和m3psi,以在原子水平上进一步了解psi和m5C的物理化学贡献。这些寡核苷酸表明修饰具有可测量的热力学贡献,并且环修饰具有全局贡献。