Abstract
There are two mutually exclusive pathways for plus-strand DNA synthesis in hepadnavirus reverse transcription. The predominant pathway gives rise to relaxed circular DNA, while the other pathway yields duplex linear DNA. Both pathways use the same RNA primer, which is capped and 18 or 19 nucleotides in length. At the completion of minus-strand DNA synthesis, the final RNase H cleavage generates the plus-strand primer. To make relaxed circular DNA, primer translocation must occur, resulting in the transfer of the primer generated at DR1 to the acceptor site (DR2) near the opposite end of the minus-strand DNA. A small fraction of viruses instead make duplex linear DNA after initiating plus-strand DNA synthesis from DR1, a process called in situ priming. We are interested in understanding the mechanism of discrimination between these two pathways. Some variants of duck hepatitis B virus exhibit high levels of in situ priming due to cis-acting mutations. The mechanism by which these mutations act has been obscure. Sequence inspection predicted formation of a small DNA hairpin in the region overlapping these mutations. We have shown that substitutions disrupting base pairing potential in this hairpin led to increased levels of in situ priming. The introduction of compensatory changes to restore base pairing potential led to reduced levels of in situ priming. Thus, formation of the small DNA hairpin overlapping the 5' end of DR1 in the minus strand contributes to the regulation of primer translocation, at least, through inhibition of in situ priming by making the 3' end of the minus-strand DNA a poor template for initiation.
MeSH Terms
Animals
Binding Sites
Chickens
DNA Primers
DNA Replication
DNA, Single-Stranded
DNA, Viral
Ducks
Gene Expression Regulation, Viral
Hepatitis B Virus, Duck/genetics
Models, Genetic
Nucleic Acid Conformation
Transcription, Genetic
Tumor Cells, Cultured
Chemicals
DNA Primers
DNA, Single-Stranded
DNA, Viral
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Habig Jeffrey W
McArdle Laboratory for Cancer Research, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.
Loeb Daniel D
References (29)
29 references, click to expand
-
Rapid and efficient site-directed mutagenesis by single-tube 'megaprimer' PCR method.
Nucleic Acids Res. 1997 Aug 15;25(16):3371-2
PMID: 9241254
-
cis-Acting sequences in addition to donor and acceptor sites are required for template switching during synthesis of plus-strand DNA for duck hepatitis B virus.
J Virol. 1997 Jul;71(7):5336-44
PMID: 9188603
-
Status of hepatitis B immunization programmes in 1998.
Vaccine. 1998 Nov;16 Suppl:S104-8
PMID: 9915049
-
Infection of ducklings with virus particles containing linear double-stranded duck hepatitis B virus DNA: illegitimate replication and reversion.
J Virol. 1998 Nov;72(11):8710-7
PMID: 9765413
-
Low dynamic state of viral competition in a chronic avian hepadnavirus infection.
J Virol. 2000 Jun;74(11):5257-65
PMID: 10799602
-
Sequence comparison of an Australian duck hepatitis B virus strain with other avian hepadnaviruses.
J Gen Virol. 2001 Feb;82(Pt 2):373-8
PMID: 11161276
-
Replication of the genome of a hepatitis B--like virus by reverse transcription of an RNA intermediate.
Cell. 1982 Jun;29(2):403-15
PMID: 6180831
-
Comparative sequence analysis of duck and human hepatitis B virus genomes.
J Med Virol. 1985 Apr;15(4):323-33
PMID: 3981148
-
Evidence that a capped oligoribonucleotide is the primer for duck hepatitis B virus plus-strand DNA synthesis.
J Virol. 1986 Jan;57(1):229-36
PMID: 2416950
-
Establishment and characterization of a chicken hepatocellular carcinoma cell line, LMH.
Cancer Res. 1987 Aug 15;47(16):4460-4
PMID: 3607775
-
Mutations affecting hepadnavirus plus-strand DNA synthesis dissociate primer cleavage from translocation and reveal the origin of linear viral DNA.
J Virol. 1991 Mar;65(3):1255-62
PMID: 1704925
-
Sequence-independent RNA cleavages generate the primers for plus strand DNA synthesis in hepatitis B viruses: implications for other reverse transcribing elements.
EMBO J. 1991 Nov;10(11):3533-40
PMID: 1915307
-
Replication of DHBV genomes with mutations at the sites of initiation of minus- and plus-strand DNA synthesis.
Virology. 1992 May;188(1):208-16
PMID: 1566574
-
Extraordinarily stable mini-hairpins: electrophoretical and thermal properties of the various sequence variants of d(GCGAAAGC) and their effect on DNA sequencing.
Nucleic Acids Res. 1992 Aug 11;20(15):3891-6
PMID: 1508675
-
The reverse transcriptase of hepatitis B virus acts as a protein primer for viral DNA synthesis.
Cell. 1992 Nov 13;71(4):663-70
PMID: 1384989
-
Novel mechanism for reverse transcription in hepatitis B viruses.
J Virol. 1993 Nov;67(11):6507-12
PMID: 7692081
-
Structural features and properties of an extraordinarily stable hairpin-turn structure of d(GCGAAGC).
Nucleic Acids Symp Ser. 1993;(29):205-6
PMID: 8247770
-
Most compact hairpin-turn structure exerted by a short DNA fragment, d(GCGAAGC) in solution: an extraordinarily stable structure resistant to nucleases and heat.
Nucleic Acids Res. 1994 Feb 25;22(4):576-82
PMID: 8127706
-
Two regions of an avian hepadnavirus RNA pregenome are required in cis for encapsidation.
J Virol. 1994 Apr;68(4):2084-90
PMID: 7511168
-
Hepadnavirus reverse transcription initiates within the stem-loop of the RNA packaging signal and employs a novel strand transfer.
J Virol. 1994 Jun;68(6):3536-43
PMID: 8189492
-
Site-specific RNA binding by a hepatitis B virus reverse transcriptase initiates two distinct reactions: RNA packaging and DNA synthesis.
J Virol. 1994 Sep;68(9):5579-87
PMID: 7520092
-
CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice.
Nucleic Acids Res. 1994 Nov 11;22(22):4673-80
PMID: 7984417
-
Illegitimate replication of linear hepadnavirus DNA through nonhomologous recombination.
J Virol. 1995 Jul;69(7):4029-36
PMID: 7769660
-
The pre-S domain of the large viral envelope protein determines host range in avian hepatitis B viruses.
Proc Natl Acad Sci U S A. 1995 Jul 3;92(14):6259-63
PMID: 7603980
-
Transfer of the minus strand of DNA during hepadnavirus replication is not invariable but prefers a specific location.
J Virol. 1995 Nov;69(11):6886-91
PMID: 7474104
-
Mutations within DR2 independently reduce the amount of both minus- and plus-strand DNA synthesized during duck hepatitis B virus replication.
J Virol. 1996 Dec;70(12):8684-90
PMID: 8970995
-
Sequence identity of the terminal redundancies on the minus-strand DNA template is necessary but not sufficient for the template switch during hepadnavirus plus-strand DNA synthesis.
J Virol. 1997 Jan;71(1):152-60
PMID: 8985334
-
GNA trinucleotide loop sequences producing extraordinarily stable DNA minihairpins.
Biochemistry. 1997 Apr 22;36(16):4761-7
PMID: 9125496
-
Efficient duck hepatitis B virus production by an avian liver tumor cell line.
J Virol. 1990 Jul;64(7):3249-58
PMID: 2352324