Linnstaedt Sarah D, Kasprzak Wojciech K, Shapiro Bruce A, Casey John L
Department of Microbiology and Immunology, Georgetown University Medical Center, Washington, DC 20057, USA.
RNA. 2006 Aug;12(8):1521-33. doi: 10.1261/rna.89306. Epub 2006 Jun 21.
RNA editing plays a critical role in the life cycle of hepatitis delta virus (HDV). The host editing enzyme ADAR1 recognizes specific RNA secondary structure features around the amber/W site in the HDV antigenome and deaminates the amber/W adenosine. A previous report suggested that a branched secondary structure is necessary for editing in HDV genotype III. This branched structure, which is distinct from the characteristic unbranched rod structure required for HDV replication, was only partially characterized, and knowledge concerning its formation and stability was limited. Here, we examine the secondary structures, conformational dynamics, and amber/W site editing of HDV genotype III RNA using a miniaturized HDV genotype III RNA in vitro. Computational analysis of this RNA using the MPGAfold algorithm indicated that the RNA has a tendency to form both metastable and stable unbranched secondary structures. Moreover, native polyacrylamide gel electrophoresis demonstrated that this RNA forms both branched and unbranched rod structures when transcribed in vitro. As predicted, the branched structure is a metastable structure that converts readily to the unbranched rod structure. Only branched RNA was edited at the amber/W site by ADAR1 in vitro. The structural heterogeneity of HDV genotype III RNA is significant because not only are both conformations of the RNA functionally important for viral replication, but the ratio of the two forms could modulate editing by determining the amount of substrate RNA available for modification.
RNA编辑在丁型肝炎病毒(HDV)的生命周期中起着关键作用。宿主编辑酶ADAR1识别HDV反基因组中琥珀色/W位点周围的特定RNA二级结构特征,并使琥珀色/W腺苷脱氨基。先前的一份报告表明,分支二级结构对于HDV基因型III的编辑是必需的。这种分支结构不同于HDV复制所需的特征性无分支杆状结构,其特征仅得到部分描述,关于其形成和稳定性的知识也很有限。在这里,我们使用体外微型化的HDV基因型III RNA来研究HDV基因型III RNA的二级结构、构象动力学和琥珀色/W位点编辑。使用MPGAfold算法对该RNA进行的计算分析表明,该RNA倾向于形成亚稳态和稳定的无分支二级结构。此外,天然聚丙烯酰胺凝胶电泳表明,这种RNA在体外转录时会形成分支和无分支的杆状结构。正如预测的那样,分支结构是一种亚稳态结构,很容易转化为无分支的杆状结构。在体外,只有分支RNA在琥珀色/W位点被ADAR1编辑。HDV基因型III RNA的结构异质性很重要,因为RNA的两种构象不仅对病毒复制在功能上很重要,而且这两种形式的比例可以通过确定可用于修饰的底物RNA的量来调节编辑。