Viruses frequently combine multiple activities into one polypeptide to conserve coding capacity. This strategy creates regulatory challenges to ascertain that the combined activities are compatible and do not interfere with each other. The papillomavirus E1 protein, as many other helicases, has the intrinsic ability to form hexamers and double hexamers (DH) that serve as the replicative DNA helicase. However, E1 also has the more unusual ability to generate local melting by forming a double trimer (DT) complex that can untwist the double stranded ori DNA in preparation for DH formation. Here we describe a switching mechanism that allows the papillomavirus E1 protein to form these two different kinds of oligomers and to transition between th...
Concerted, stochastic and sequential mechanisms of action have been proposed for different hexameric...
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mec...
A prerequisite for DNA replication is the unwinding of duplex DNA catalyzed by a replicative hexamer...
Viral initiators perform multiple functions in initiation of DNA replication including ori binding, ...
The mechanism of DNA translocation by papillomavirus E1 and polyomavirus LTag hexameric helicases in...
The mechanism of DNA translocation by papillomavirus E1 and polyomavirus LTag hexameric helicases in...
The papillomavirus replication protein E1 assembles on the viral origin of replication (ori) as a se...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
AbstractE1, an ATP-dependent DNA helicase, is the only enzyme encoded by papillomaviruses (PVs). It ...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
The papillomavirus E1 helicase, with the help of E2, assembles at the viral origin into a double hex...
Preparation of DNA templates for replication requires opening of the duplex to expose single-strande...
The papillomaviruses (PV) are small dsDNA tumour viruses of significant medical importance and the p...
The E1 protein of bovine papillomavirus type-1 is the viral replication initiator protein and replic...
This is a freely-available open access publication. Please cite the published version which is avail...
Concerted, stochastic and sequential mechanisms of action have been proposed for different hexameric...
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mec...
A prerequisite for DNA replication is the unwinding of duplex DNA catalyzed by a replicative hexamer...
Viral initiators perform multiple functions in initiation of DNA replication including ori binding, ...
The mechanism of DNA translocation by papillomavirus E1 and polyomavirus LTag hexameric helicases in...
The mechanism of DNA translocation by papillomavirus E1 and polyomavirus LTag hexameric helicases in...
The papillomavirus replication protein E1 assembles on the viral origin of replication (ori) as a se...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
AbstractE1, an ATP-dependent DNA helicase, is the only enzyme encoded by papillomaviruses (PVs). It ...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
The papillomavirus E1 helicase, with the help of E2, assembles at the viral origin into a double hex...
Preparation of DNA templates for replication requires opening of the duplex to expose single-strande...
The papillomaviruses (PV) are small dsDNA tumour viruses of significant medical importance and the p...
The E1 protein of bovine papillomavirus type-1 is the viral replication initiator protein and replic...
This is a freely-available open access publication. Please cite the published version which is avail...
Concerted, stochastic and sequential mechanisms of action have been proposed for different hexameric...
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mec...
A prerequisite for DNA replication is the unwinding of duplex DNA catalyzed by a replicative hexamer...