The bovine papillomavirus E2 protein modulates the assembly of but is not stably maintained in a replication-competent multimeric E1-replication origin complex Journal Article


Authors: Lusky, M.; Hurwitz, J.; Seo, Y. S.
Article Title: The bovine papillomavirus E2 protein modulates the assembly of but is not stably maintained in a replication-competent multimeric E1-replication origin complex
Abstract: Initiation of bovine papillomavirs (BPV) DNA synthesis in vivo and in vitro depends on the interaction of the viral initiator protein E1 with the replication origin (ori+ DNA). The viral E2 protein assists this interaction, resulting in a cooperative assembly of both proteins on the replication origin. Using gel mobility-shift experiments, we demonstrate that in the presence of both E1 and E2 proteins two classes of orl+ DNA complexes were formed: complex 1 (c1) and complex 2 (c2). Formation of c1 dependent on both the E1 and E2 proteins and both proteins were contained within c1. The generation of c2 was dependent on the E1 protein and cold be enhanced by E2, but the E2 protein was not detected within c2. At high E2/E1 ratios, c1 was the dominant complex formed. Under these conditions, E1-dependent BPV DNA synthesis in vitro was inhibited. At low E2/E1 ratios, the stimulation of c2 was correlated with the stimulation of BPV DNA replication by E2 in vitro. These data suggest that E2 assists E1 in the formation of an intermediate c1 complex, which is replication inactive. The c1 complex is converted in turn to the replication-active c2 complex, which contains E1 but lacks E2. We propose that the ratios of c1 and c2 formed in response to the levels of E1 and E2 proteins determine the potential for BPV DNA synthesis in vitro and in vivo and may contribute to copy number regulation of BPV plasmids within the cell.
Keywords: dna-binding proteins; nonhuman; dna replication; dna synthesis; complex formation; protein assembly; protein binding; molecular sequence data; growth regulation; base sequence; dna, viral; nucleic acid denaturation; virus replication; dna primers; in vitro; virus protein; viral proteins; virogenesis; bovinae; nucleoprotein; priority journal; article; nucleoprotein complex; support, u.s. gov't, p.h.s.; macromolecular systems; bovine papillomavirus; unwinding; papillomavirus, bovine; negative replication control; origin binding; bovine parvovirus
Journal Title: Proceedings of the National Academy of Sciences of the United States of America
Volume: 91
Issue: 19
ISSN: 0027-8424
Publisher: National Academy of Sciences  
Date Published: 1994-09-13
Start Page: 8895
End Page: 8899
Language: English
DOI: 10.1073/pnas.91.19.8895
PROVIDER: scopus
PMCID: PMC44713
PUBMED: 8090740
DOI/URL:
Notes: Export Date: 14 January 2019 -- Article -- CODEN: PNASA C2 -- Source: Scopus
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  1. Jerard Hurwitz
    206 Hurwitz