García-Sacristán Ana, Moreno Miguel, Ariza-Mateos Ascensión, López-Camacho Elena, Jáudenes Rosa M, Vázquez Luis, Gómez Jordi, Martín-Gago José Ángel, Briones Carlos
Department of Molecular Evolution, Centro de Astrobiología (CSIC-INTA), Torrejón de Ardoz, Madrid 28850, Spain Centro de Investigaciones Biomédicas en Red de Enfermedades Hepáticas y Digestivas, (CIBERehd), Spain.
Department of Molecular Evolution, Centro de Astrobiología (CSIC-INTA), Torrejón de Ardoz, Madrid 28850, Spain.
Nucleic Acids Res. 2015 Jan;43(1):565-80. doi: 10.1093/nar/gku1299. Epub 2014 Dec 15.
The 5' untranslated region of hepatitis C virus (HCV) genomic RNA contains an internal ribosome entry site (IRES) element, composed of domains II-IV, which is required for cap-independent translation initiation. Little information on the 3D structure of the whole functional HCV IRES is still available. Here, we use atomic force microscopy to visualize the HCV IRES conformation in its natural sequence context, which includes the upstream domain I and the essential, downstream domains V and VI. The 574 nt-long molecule analyzed underwent an unexpected, Mg(2+)-induced switch between two alternative conformations: from 'open', elongated morphologies at 0-2 mM Mg(2+) concentration to a 'closed', comma-shaped conformation at 4-6 mM Mg(2+). This sharp transition, confirmed by gel-shift analysis and partial RNase T1 cleavage, was hindered by the microRNA miR-122. The comma-shaped IRES-574 molecules visualized at 4-6 mM Mg(2+) in the absence of miR-122 showed two arms. Our data support that the first arm would contain domain III, while the second one would be composed of domains (I-II)+(V-VI) thanks to a long-range RNA interaction between the I-II spacer and the basal region of domain VI. This reinforces the previously described structural continuity between the HCV IRES and its flanking domains I, V and VI.
丙型肝炎病毒(HCV)基因组RNA的5'非翻译区包含一个内部核糖体进入位点(IRES)元件,由结构域II-IV组成,它是不依赖帽结构的翻译起始所必需的。关于完整功能性HCV IRES三维结构的信息仍然很少。在这里,我们使用原子力显微镜在其自然序列背景下观察HCV IRES的构象,其中包括上游结构域I和必需的下游结构域V和VI。所分析的574个核苷酸长的分子在Mg(2+)诱导下在两种不同构象之间发生了意想不到的转换:在0-2 mM Mg(2+)浓度下为“开放”的伸长形态,在4-6 mM Mg(2+)下为“封闭”的逗号形构象。这种急剧转变通过凝胶迁移分析和部分RNase T1切割得到证实,并受到微小RNA miR-122的阻碍。在4-6 mM Mg(2+)且不存在miR-122的情况下观察到的逗号形IRES-574分子显示出两个臂。我们的数据支持,第一个臂将包含结构域III,而第二个臂将由结构域(I-II)+(V-VI)组成,这得益于I-II间隔区与结构域VI基部区域之间的长程RNA相互作用。这加强了先前描述的HCV IRES与其侧翼结构域I、V和VI之间的结构连续性。