Department of Microbiology and Immunology, Georgetown University Medical Center, Washington, DC, USA.
J Virol. 2013 Aug;87(15):8665-74. doi: 10.1128/JVI.00929-13. Epub 2013 Jun 5.
Hepatitis delta virus (HDV) replication and packaging require interactions between the unbranched rodlike structure of HDV RNA and hepatitis delta antigen (HDAg), a basic, disordered, oligomeric protein. The tendency of the protein to bind nonspecifically to nucleic acids has impeded analysis of HDV RNA protein complexes and conclusive determination of the regions of HDAg involved in RNA binding. The most widely cited model suggests that RNA binding involves two proposed arginine-rich motifs (ARMs I and II) in the middle of HDAg. However, other studies have questioned the roles of the ARMs. Here, binding activity was analyzed in vitro using HDAg-160, a C-terminal truncation that binds with high affinity and specificity to HDV RNA segments in vitro. Mutation of the core arginines of ARM I or ARM II in HDAg-160 did not diminish binding to HDV unbranched rodlike RNA. These same mutations did not abolish the ability of full-length HDAg to inhibit HDV RNA editing in cells, an activity that involves RNA binding. Moreover, only the N-terminal region of the protein, which does not contain the ARMs, was cross-linked to a bound HDV RNA segment in vitro. These results indicate that the amino-terminal region of HDAg is in close contact with the RNA and that the proposed ARMs are not required for binding HDV RNA. Binding was not reduced by mutation of additional clusters of basic amino acids. This result is consistent with an RNA-protein complex that is formed via numerous contacts between the RNA and each HDAg monomer.
乙型肝炎 delta 病毒(HDV)的复制和包装需要未分支的棒状 HDV RNA 与乙型肝炎 delta 抗原(HDAg)之间的相互作用,HDAg 是一种碱性、无序的寡聚蛋白。该蛋白与核酸非特异性结合的倾向阻碍了对 HDV RNA 蛋白复合物的分析,也无法明确确定 HDAg 中参与 RNA 结合的区域。最广泛引用的模型表明,RNA 结合涉及 HDAg 中部的两个假定富含精氨酸的基序(ARM I 和 II)。然而,其他研究对 ARMs 的作用提出了质疑。在这里,使用 HDAg-160 进行了体外结合活性分析,HDAg-160 是一种 C 端截断物,可在体外与 HDV RNA 片段高亲和力和特异性结合。在 HDAg-160 中突变 ARM I 或 ARM II 的核心精氨酸并没有降低与 HDV 未分支棒状 RNA 的结合。这些相同的突变并没有消除全长 HDAg 抑制细胞中 HDV RNA 编辑的能力,这种活性涉及 RNA 结合。此外,只有不含 ARMs 的蛋白的 N 端区域在体外与结合的 HDV RNA 片段发生交联。这些结果表明,HDAg 的氨基末端区域与 RNA 紧密接触,并且提议的 ARMs 不需要与 HDV RNA 结合。突变额外的碱性氨基酸簇并没有减少结合。这一结果与 RNA-蛋白复合物一致,该复合物通过 RNA 与每个 HDAg 单体之间的许多接触形成。