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Virology|January 1, 1992
Processing of the herpes simplex virus assembly protein ICP35 near its carboxy terminal end requires the product of the whole of the UL26 reading frameV G Preston, F J Rixon, I M McDougall, et al.The Journal of General Virology|October 1, 1988
Mutational analysis of the herpes simplex virus type 1 trans-inducing factor Vmw65C I Ace, M A Dalrymple, F H Ramsay, et al.The Journal of General Virology|May 1, 1994
Localization of the herpes simplex virus type 1 major capsid protein VP5 to the cell nucleus requires the abundant scaffolding protein VP22aP Nicholson, C Addison, A M Cross, et al.Journal of Virology|November 1, 1978
Physical mapping of herpes simplex virus-induced polypeptidesH S Marsden, N D Stow, V G Preston, et al.The Journal of General Virology|July 1, 1997
Efficient herpes simplex virus type 1 (HSV-1) capsid formation directed by the varicella-zoster virus scaffolding protein requires the carboxy-terminal sequences from the HSV-1 homologueV G Preston, J Kennard, F J Rixon, et al.The Journal of General Virology|September 1, 1996
Multiple interactions control the intracellular localization of the herpes simplex virus type 1 capsid proteinsF J Rixon, C Addison, A McGregor, et al.The Journal of General Virology|October 1, 1988
Ribonucleotide reductase encoded by herpes simplex virus is a determinant of the pathogenicity of the virus in mice and a valid antiviral targetJ M Cameron, I McDougall, H S Marsden, et al.Journal of Virology|November 1, 1978
Recombinants between herpes simplex virus types 1 and 2: analyses of genome structures and expression of immediate early polypeptidesV G Preston, A J Davison, H S Marsden, et al.Pageof 3