Merino Edward J, Wilkinson Kevin A, Coughlan Jennifer L, Weeks Kevin M
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.
J Am Chem Soc. 2005 Mar 30;127(12):4223-31. doi: 10.1021/ja043822v.
The reactivity of an RNA ribose hydroxyl is shown to be exquisitely sensitive to local nucleotide flexibility because a conformationally constrained adjacent 3'-phosphodiester inhibits formation of the deprotonated, nucleophilic oxyanion form of the 2'-hydroxyl group. Reaction with an appropriate electrophile, N-methylisatoic anhydride, to form a 2'-O-adduct thus can be used to monitor local structure at every nucleotide in an RNA. We develop a quantitative approach involving Selective 2'-Hydroxyl Acylation analyzed by Primer Extension (SHAPE) to map the structure of and to distinguish fine differences in structure for tRNAAsp transcripts at single nucleotide resolution. Modest extensions of the SHAPE approach will allow RNA structure to be monitored comprehensively and at single nucleotide resolution for RNAs of arbitrary sequence and structural complexity and under diverse solution environments.
RNA核糖羟基的反应性被证明对局部核苷酸灵活性极为敏感,因为构象受限的相邻3'-磷酸二酯会抑制2'-羟基去质子化的亲核氧阴离子形式的形成。因此,与合适的亲电试剂N-甲基异邻苯二甲酸酐反应形成2'-O-加合物,可用于监测RNA中每个核苷酸的局部结构。我们开发了一种定量方法,即通过引物延伸分析的选择性2'-羟基酰化(SHAPE),以单核苷酸分辨率绘制tRNAAsp转录本的结构并区分其结构上的细微差异。对SHAPE方法进行适度扩展后,将能够在各种溶液环境下,以单核苷酸分辨率全面监测任意序列和结构复杂性的RNA的结构。