Concerted, stochastic and sequential mechanisms of action have been proposed for different hexameric AAA+ molecular motors. Here we report the crystal structure of the E1 helicase from bovine papillomavirus, where asymmetric assembly is for the first time observed in the absence of nucleotide cofactors and DNA. Surprisingly, the ATP-binding sites adopt specific conformations linked to positional changes in the DNA-binding hairpins, which follow a wave-like trajectory, as observed previously in the E1/DNA/ADP complex. The protein's assembly thus maintains such an asymmetric state in the absence of DNA and nucleotide cofactors, allowing consideration of the E1 helicase action as the propagation of a conformational wave around the protein ring...
The papillomavirus replication protein E1 assembles on the viral origin of replication (ori) as a se...
Human papillomavirus (HPV) DNA replication requires the viral origin recognition protein E2 and the ...
AbstractWe have determined the crystal structure of an active, hexameric fragment of the gene 4 heli...
This is a freely-available open access publication. Please cite the published version which is avail...
The E1 protein of bovine papillomavirus type-1 is the viral replication initiator protein and replic...
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 papillomaviruses (PV) are small dsDNA tumour viruses of significant medical importance and the p...
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mec...
Helicases are molecular machines that utilize energy derived from ATP hydrolysis to move along nucle...
Hexameric helicases are motor proteins that unwind double-stranded DNA (dsDNA) during DNA replicatio...
A prerequisite for DNA replication is the unwinding of duplex DNA catalyzed by a replicative hexamer...
Hexameric helicases are processive DNA unwinding machines but how they engage with a replication for...
AbstractHexameric helicases are molecular motor proteins that utilize energy obtained from ATP hydro...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
The papillomavirus replication protein E1 assembles on the viral origin of replication (ori) as a se...
Human papillomavirus (HPV) DNA replication requires the viral origin recognition protein E2 and the ...
AbstractWe have determined the crystal structure of an active, hexameric fragment of the gene 4 heli...
This is a freely-available open access publication. Please cite the published version which is avail...
The E1 protein of bovine papillomavirus type-1 is the viral replication initiator protein and replic...
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 papillomaviruses (PV) are small dsDNA tumour viruses of significant medical importance and the p...
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mec...
Helicases are molecular machines that utilize energy derived from ATP hydrolysis to move along nucle...
Hexameric helicases are motor proteins that unwind double-stranded DNA (dsDNA) during DNA replicatio...
A prerequisite for DNA replication is the unwinding of duplex DNA catalyzed by a replicative hexamer...
Hexameric helicases are processive DNA unwinding machines but how they engage with a replication for...
AbstractHexameric helicases are molecular motor proteins that utilize energy obtained from ATP hydro...
E1 and T-antigen of the tumour viruses bovine papillomavirus (BPV-1) and Simian virus 40 (SV40) are ...
The papillomavirus replication protein E1 assembles on the viral origin of replication (ori) as a se...
Human papillomavirus (HPV) DNA replication requires the viral origin recognition protein E2 and the ...
AbstractWe have determined the crystal structure of an active, hexameric fragment of the gene 4 heli...