Phelan Marie, Banks Ryan J, Conn Graeme, Ramesh Vasudevan
Department of Chemistry, University of Manchester Institute of Science and Technology, PO Box 88, Manchester M60 1QD, UK.
Nucleic Acids Res. 2004 Sep 7;32(16):4715-24. doi: 10.1093/nar/gkh805. Print 2004.
The structure and Mg(2+) binding properties of a conserved 75mer RNA motif of the internal ribosome entry site (IRES) element of encephalomyocarditis virus picornavirus have been investigated by (1)H-NMR and UV melting experiments. The assignment of the imino proton resonances with characteristic chemical shift dispersion for canonical and non-canonical base pairs confirmed the predicted secondary structure of the 75mer and its fragments. Addition of Mg(2+) resulted in a dramatic increase in apparent melting temperature, with the 75mer RNA registering the biggest increase, from 63 to 80 degrees C, thus providing evidence for enhanced stability arising from Mg(2+) binding. Similarly, addition of Mg(2+) induced selective changes to the chemical shifts of the imino protons of a GCGA tetraloop in the 75mer, that is essential for IRES activity, thereby highlighting a possible structural role for Mg(2+) in the folding of the 75mer. Significantly, the same protons show retarded exchange to water solvent, even at elevated temperature, which suggest that Mg(2+) induces a conformational rearrangement of the 75mer. Thus, we propose that Mg(2+) serves two important roles: (i) enhancing thermodynamic stability of the 75mer RNA (and its submotifs) via non-specific interactions with the phosphate backbone and (ii) promoting the folding of the 75mer RNA by binding to the GCGA tetraloop.
通过核磁共振氢谱(¹H-NMR)和紫外熔解实验,对脑心肌炎病毒微小核糖核酸病毒内部核糖体进入位点(IRES)元件中一个保守的75聚体RNA基序的结构和镁离子(Mg²⁺)结合特性进行了研究。对具有典型和非典型碱基对特征化学位移分散的亚氨基质子共振进行归属,证实了75聚体及其片段的预测二级结构。添加Mg²⁺导致表观熔解温度显著升高,75聚体RNA的升高幅度最大,从63℃升至80℃,从而为Mg²⁺结合导致稳定性增强提供了证据。同样,添加Mg²⁺会引起75聚体中对IRES活性至关重要的GCGA四环亚氨基质子化学位移的选择性变化,从而突出了Mg²⁺在75聚体折叠中可能的结构作用。值得注意的是,即使在高温下,相同的质子与水溶剂的交换也会延迟,这表明Mg²⁺会诱导75聚体发生构象重排。因此,我们认为Mg²⁺发挥两个重要作用:(i)通过与磷酸骨架的非特异性相互作用增强75聚体RNA(及其亚基序)的热力学稳定性;(ii)通过与GCGA四环结合促进75聚体RNA的折叠。