Hobro Alison J, Rouhi Mansour, Blanch Ewan W, Conn Graeme L
Manchester Interdisciplinary Biocentre, Faculty of Life Sciences, University of Manchester, 131 Princess Street, Manchester M1 7DN, UK.
Nucleic Acids Res. 2007;35(4):1169-77. doi: 10.1093/nar/gkm012. Epub 2007 Jan 30.
Raman and Raman optical activity (ROA) spectra were collected for four RNA oligonucleotides based on the EMCV IRES Domain I to assess the contributions of helix, GNRA tetraloop, U.C mismatch base pair and pyrimidine-rich bulge structures to each. Both Raman and ROA spectra show overall similarities for all oligonucleotides, reflecting the presence of the same base paired helical regions and GNRA tetraloop in each. Specific bands are sensitive to the effect of the mismatch and asymmetric bulge on the structure of the RNA. Raman band changes are observed that reflect the structural contexts of adenine residues, disruption of A-form helical structure, and incorporation of pyrimidine bases in non-helical regions. The ROA spectra are also sensitive to conformational mobility of ribose sugars, and verify a decrease in A-type helix content upon introduction of the pyrimidine-rich bulge. Several Raman and ROA bands also clearly show cooperative effects between the mismatch and pyrimidine-rich bulge motifs on the structure of the RNA. The complementary nature of Raman and ROA spectra provides detailed and highly sensitive information about the local environments of bases, and secondary and tertiary structures, and has the potential to yield spectral signatures for a wide range of RNA structural motifs.
我们收集了基于脑心肌炎病毒内部核糖体进入位点结构域I的四种RNA寡核苷酸的拉曼光谱和拉曼光学活性(ROA)光谱,以评估螺旋结构、GNRA四环、U·C错配碱基对和富含嘧啶的凸起结构对各自的贡献。拉曼光谱和ROA光谱都显示出所有寡核苷酸的总体相似性,反映出每种寡核苷酸中存在相同的碱基配对螺旋区域和GNRA四环。特定的谱带对错配和不对称凸起对RNA结构的影响敏感。观察到拉曼谱带的变化,这些变化反映了腺嘌呤残基的结构背景、A-型螺旋结构的破坏以及嘧啶碱基在非螺旋区域的掺入。ROA光谱对核糖的构象流动性也很敏感,并证实了引入富含嘧啶的凸起后A-型螺旋含量的降低。几个拉曼谱带和ROA谱带也清楚地显示了错配和富含嘧啶的凸起基序对RNA结构的协同作用。拉曼光谱和ROA光谱的互补性质提供了有关碱基局部环境、二级和三级结构的详细且高度敏感的信息,并且有可能为广泛的RNA结构基序产生光谱特征。