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PMID: 9525677 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

The carboxyl-terminal region of the human papillomavirus type 16 E1 protein determines E2 protein specificity during DNA replication.

Journal of virology ·Vol. 72 ·No. 4 ·1998-04-00 ·Pages 3436-41

Zou N, Liu JS, Kuo SR, Broker TR, Chow LT

Abstract

The mechanism of DNA replication is conserved among papillomaviruses. The virus-encoded E1 and E2 proteins collaborate to target the origin and recruit host DNA replication proteins. Expression vectors of E1 and E2 proteins support homologous and heterologous papillomaviral origin replication in transiently transfected cells. Viral proteins from different genotypes can also collaborate, albeit with different efficiencies, indicating a certain degree of specificity in E1-E2 interactions. We report that, in the assays of our study, the human papillomavirus type 11 (HPV-11) E1 protein functioned with the HPV-16 E2 protein, whereas the HPV-16 E1 protein exhibited no detectable activity with the HPV-11 E2 protein. Taking advantage of this distinction, we used chimeric E1 proteins to delineate the E1 protein domains responsible for this specificity. Hybrids containing HPV-16 E1 amino-terminal residues up to residue 365 efficiently replicated either viral origin in the presence of either E2 protein. The reciprocal hybrids containing amino-terminal HPV-11 sequences exhibited a high activity with HPV-16 E2 but no activity with HPV-11 E2. Reciprocal hybrid proteins with the carboxyl-terminal 44 residues from either E1 had an intermediate property, but both collaborated more efficiently with HPV-16 E2 than with HPV-11 E2. In contrast, chimeras with a junction in the putative ATPase domain showed little or no activity with either E2 protein. We conclude that the E1 protein consists of distinct structural and functional domains, with the carboxyl-terminal 284 residues of the HPV-16 E1 protein being the primary determinant for E2 specificity during replication, and that chimeric exchanges in or bordering the ATPase domain inactivate the protein.

MeSH Terms
Adenosine Triphosphatases/metabolism Amino Acid Sequence Binding Sites Cell Line, Transformed DNA Replication DNA-Binding Proteins/genetics,metabolism Humans Molecular Sequence Data Oncogene Proteins/genetics,metabolism Oncogene Proteins, Viral/genetics,metabolism Papillomaviridae/genetics,metabolism,physiology Recombinant Fusion Proteins/genetics,metabolism Replication Origin Structure-Activity Relationship Viral Proteins/genetics,metabolism Virus Replication
Chemicals
DNA-Binding Proteins E1 protein, Human papillomavirus 16 E1 protein, Human papillomavirus type 11 E2 protein, Human papillomavirus type 16 Oncogene Proteins Oncogene Proteins, Viral Recombinant Fusion Proteins Viral Proteins Adenosine Triphosphatases
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Zou N
Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, 35294-0005, USA.
Liu J S
Kuo S R
Broker T R
Chow L T
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Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1998-04-00
Pages
3436-41
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC109845
Subset
IM
Grants
NCI NIH HHS · R01 CA036200 · United States
NCI NIH HHS · CA36200 · United States
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