Distinct Requirement for Two Stages of Protein-Primed Initiation of Reverse Transcription in Hepadnaviruses
- 15 June 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (12) , 5857-65
- https://doi.org/10.1128/jvi.76.12.5857-5865.2002
Abstract
Reverse transcription in hepadnaviruses is primed by the viral reverse transcriptase (RT) (protein priming) and requires the specific interaction between the RT and a viral RNA signal termed ε, which bears the specific template sequence for protein priming. The product of protein priming is a short oligodeoxynucleotide which represents the 5′ end of the viral minus-strand DNA and is covalently attached to the RT. We have now identified truncated RT variants from the duck hepatitis B virus that were fully active in the initial step of protein priming, i.e., the covalent attachment of the first nucleotide to the protein (RT deoxynucleotidylation), but defective in any subsequent DNA polymerization. A short sequence in the RT domain was localized that was dispensable for RT deoxynucleotidylation but essential for the subsequent DNA polymerization. These results have thus revealed two distinct stages of protein priming, i.e., the initial attachment of the first nucleotide to the RT (RT deoxynucleotidylation or initiation of protein priming) and the subsequent DNA synthesis (polymerization) to complete protein priming, with the second step entailing additional RT sequences. Two models are proposed to explain the observed differential sequence requirement for the two distinct stages of the protein priming reaction.Keywords
This publication has 24 references indexed in Scilit:
- In Vitro Reconstitution of Functional Hepadnavirus Reverse Transcriptase with Cellular Chaperone ProteinsJournal of Virology, 2002
- A Single Amino Acid in the Reverse Transcriptase Domain of Hepatitis B Virus Affects Virus Replication EfficiencyJournal of Virology, 2001
- The (I/Y)XGG Motif of Adenovirus DNA Polymerase Affects Template DNA Binding and the Transition from Initiation to ElongationPublished by Elsevier ,2001
- Molecular Modeling and Biochemical Characterization Reveal the Mechanism of Hepatitis B Virus Polymerase Resistance to Lamivudine (3TC) and Emtricitabine (FTC)Journal of Virology, 2001
- Hepatitis B Virus BiologyMicrobiology and Molecular Biology Reviews, 2000
- Identification and characterization of mutations in hepatitis B virus resistant to lamivudineHepatology, 1998
- RNA Signals That Control DNA Replication in HepadnavirusesSeminars in Virology, 1997
- Mutagenesis of a Hepatitis B Virus Reverse Transcriptase Yields Temperature-Sensitive VirusVirology, 1996
- Polymerase gene products of hepatitis B viruses are required for genomic RNA packaging as well as for reverse transcriptionNature, 1990
- Replication of the genome of a hepatitis B-like virus by reverse transcription of an RNA intermediatePublished by Elsevier ,1982