cis-acting sequences required for encapsidation of duck hepatitis B virus pregenomic RNA
- 1 June 1991
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 65 (6) , 3309-3316
- https://doi.org/10.1128/jvi.65.6.3309-3316.1991
Abstract
Hepadnavirus reverse transcription requires that pregenomic RNA first be selectively packaged into a cytoplasmic core particle. This process presumably requires the presence of specific recognition sequences on the pregenomic RNA. To define the cis-acting sequences required for pregenome encapsidation in the duck hepatitis B virus (DHBV), we assayed the packaging efficiency of a series of pregenomic RNA deletion mutants and hybrid DHBV/lacZ fusion transcripts. The 5' boundary of the packaging signal lies within the precore region, starting approximately 35 nucleotides from the cap site of pregenomic RNA; thus, the DR1 sequence required for proper viral DNA synthesis is not included in this signal. To define the 3' boundary of the encapsidation signal, fusion transcripts bearing foreign (lacZ) sequences fused to DHBV at different sites 3' to the pregenomic RNA start site were examined. A surprisingly large region of the DHBV genome proved to be required for packaging of such chimeras, which are efficiently encapsidated only when they contain the first 1,200 to 1,400 nucleotides of DHBV pregenomic RNA. However, mutant genomes bearing insertions within this region are packaged efficiently, making it likely that the actual recognition elements for encapsidation are smaller discontinuous sequences located within this region.Keywords
This publication has 21 references indexed in Scilit:
- A short cis-acting sequence is required for hepatitis B virus pregenome encapsidation and sufficient for packaging of foreign RNA.The EMBO Journal, 1990
- Polymerase gene products of hepatitis B viruses are required for genomic RNA packaging as well as for reverse transcriptionNature, 1990
- Replication of duck hepatitis B virus in two differentiated human hepatoma cell lines after transfection with cloned viral DNAVirology, 1988
- THE MOLECULAR BIOLOGY OF THE HEPATITIS B VIRUSESAnnual Review of Biochemistry, 1987
- Activation and suppression of pp60c-src transforming ability by mutation of its primary sites of tyrosine phosphorylationCell, 1987
- Comparative sequence analysis of duck and human hepatitis B virus genomesJournal of Medical Virology, 1985
- Mapping the major transcripts of ground squirrel hepatitis virus: the presumptive template for reverse transcriptase is terminally redundantCell, 1985
- Transcripts and the putative RNA pregenome of duck hepatitis B virus: Implications for reverse transcriptionCell, 1985
- Construction of a retrovirus packaging mutant and its use to produce helper-free defective retrovirusCell, 1983
- Replication of the genome of a hepatitis B-like virus by reverse transcription of an RNA intermediatePublished by Elsevier ,1982