RNA Editing in Hepatitis Delta Virus Genotype III Requires a Branched Double-Hairpin RNA Structure
Open Access
- 1 August 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (15) , 7385-7397
- https://doi.org/10.1128/jvi.76.15.7385-7397.2002
Abstract
RNA editing at the amber/W site plays a central role in the replication scheme of hepatitis delta virus (HDV), allowing the virus to produce two functionally distinct forms of the sole viral protein, hepatitis delta antigen (HDAg), from the same open reading frame. Editing is carried out by a cellular activity known as ADAR (adenosine deaminase), which acts on RNA substrates that are at least partially double stranded. In HDV genotype I, editing requires a highly conserved base-paired structure that occurs within the context of the unbranched rod structure characteristic of HDV RNA. This base-paired structure is disrupted in the unbranched rod of HDV genotype III, which is the most distantly related of the three known HDV genotypes and is associated with the most severe disease. Here I show that RNA editing in HDV genotype III requires a branched double-hairpin structure that deviates substantially from the unbranched rod structure, involving the rearrangement of nearly 80 bp. The structure includes a UNCG RNA tetraloop, a highly stable structural motif frequently involved in the folding of large RNAs such as rRNA. The double-hairpin structure is required for editing, and hence for virion formation, but not for HDV RNA replication, which requires the unbranched rod structure. HDV genotype III thus relies on a dynamic conformational switch between the two different RNA structures: the unbranched rod characteristic of HDV RNA and a branched double-hairpin structure that is required for RNA editing. The different mechanisms of editing in genotypes I and III underscore their functional differences and may be related to pathogenic differences as well.Keywords
This publication has 70 references indexed in Scilit:
- A role for upstream RNA structure in facilitating the catalytic fold of the genomic hepatitis delta virus ribozymeJournal of Molecular Biology, 2000
- Expanded sequence dependence of thermodynamic parameters improves prediction of RNA secondary structureJournal of Molecular Biology, 1999
- Structural Features of the UCCG and UGCG Tetraloops in Very Short Hairpins As Evidenced by Optical SpectroscopyBiochemistry, 1998
- The Predominance of Hepatitis Delta Virus Genotype I Among Chronically Infected Italian PatientsHepatology, 1997
- Hepatitis B Virus (HBV)/Hepatitis D Virus (HDV) Coinfection in Outbreaks of Acute Hepatitis in the Peruvian Amazon Basin: The Roles of HDV Genotype III and HBV Genotype FThe Journal of Infectious Diseases, 1996
- The Role of RNA Editing in Controlling Glutamate Receptor Channel PropertiesJournal of Neurochemistry, 1996
- Identification of a new hepatitis B virus (HBV) genotype from Brazil that expresses HBV surface antigen subtype adw4Journal of General Virology, 1993
- Immunoblot analysis demonstrates that the large and small forms of hepatitis delta virus antigen have different C-terminal amino acid sequencesJournal of General Virology, 1992
- A pseudoknot-like structure required for efficient self-cleavage of hepatitis delta virus RNANature, 1991
- Antigens of Hepatitis Delta Virus in the Liver and Serum of Humans and AnimalsThe Journal of Infectious Diseases, 1986