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Genomic Features of the Human Bocaviruses

Overview
Journal Future Virol
Specialty Microbiology
Date 2012 Mar 6
PMID 22389649
Citations 27
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Abstract

The human bocavirus (HBoV) was initially discovered in 2005 as the second pathogenic member of the parvovirus family, next to the human parvovirus B19. HBoV has since been shown to be extremely common worldwide and to cause a systemic infection in small children often resulting in respiratory disease. Three more, presumably enteric, human bocaviruses (HBoV2-4) have been identified in stool samples. Parvoviruses are assumed to replicate via their genomic terminal hairpin-like structures in a so-called 'rolling-hairpin model'. These terminal sequences have recently been partially identified in head-to-tail HBoV-PCR amplicons from clinical samples, and are most likely hybrid relics of HBoV's predecessors, namely bovine parvovirus 1 on the left-hand side and minute virus of canines on the right, shown for the first time in this article. Thereby, the replication model postulated for HBoV remains questionable as the occurrence of head-to-tail sequences is not a typical feature of the rolling-hairpin replication model. However, such episomes can also be persistent storage forms of the genome.

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References
1.
Allander T, Tammi M, Eriksson M, Bjerkner A, Tiveljung-Lindell A, Andersson B . Cloning of a human parvovirus by molecular screening of respiratory tract samples. Proc Natl Acad Sci U S A. 2005; 102(36):12891-6. PMC: 1200281. DOI: 10.1073/pnas.0504666102. View

2.
Legendre D, Rommelaere J . Targeting of promoters for trans activation by a carboxy-terminal domain of the NS-1 protein of the parvovirus minute virus of mice. J Virol. 1994; 68(12):7974-85. PMC: 237260. DOI: 10.1128/JVI.68.12.7974-7985.1994. View

3.
Nakashima A, Morita E, Saito S, Sugamura K . Human Parvovirus B19 nonstructural protein transactivates the p21/WAF1 through Sp1. Virology. 2004; 329(2):493-504. DOI: 10.1016/j.virol.2004.09.008. View

4.
Chen K, Shull B, Moses E, Lederman M, Stout E, Bates R . Complete nucleotide sequence and genome organization of bovine parvovirus. J Virol. 1986; 60(3):1085-97. PMC: 253350. DOI: 10.1128/JVI.60.3.1085-1097.1986. View

5.
Kesebir D, Vazquez M, Weibel C, Shapiro E, Ferguson D, Landry M . Human bocavirus infection in young children in the United States: molecular epidemiological profile and clinical characteristics of a newly emerging respiratory virus. J Infect Dis. 2006; 194(9):1276-82. PMC: 7204143. DOI: 10.1086/508213. View