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Journal of Virology
|
November 26, 2010
Seeing the portal in herpes simplex virus type 1 B capsids
R H Rochat, X Liu, K Murata, et al.
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 frame
V G Preston, F J Rixon, I M McDougall, et al.
The Journal of General Virology
|
November 1, 1986
Characterization of the IE110 gene of herpes simplex virus type 1
L J Perry, F J Rixon, R D Everett, et al.
The Journal of General Virology
|
June 1, 1993
Neurons containing latency-associated transcripts are numerous and widespread in dorsal root ganglia following footpad inoculation of mice with herpes simplex virus type 1 mutant in1814
M S Ecob-Prince, C M Preston, F J Rixon, et al.
The Journal of General Virology
|
June 1, 1993
Reactivation in vivo and in vitro of herpes simplex virus from mouse dorsal root ganglia which contain different levels of latency-associated transcripts
M S Ecob-Prince, F J Rixon, C M Preston, et al.
Virology
|
April 30, 1986
The 10K virion phosphoprotein encoded by gene US9 from herpes simplex virus type 1
M C Frame, D J McGeoch, F J Rixon, et al.
Nature Structural Biology
|
November 1, 1995
Assembly of VP26 in herpes simplex virus-1 inferred from structures of wild-type and recombinant capsids
Z H Zhou, J He, J Jakana, 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 VP22a
P Nicholson, C Addison, A M Cross, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
April 18, 1998
Identification of the sites of interaction between the scaffold and outer shell in herpes simplex virus-1 capsids by difference electron imaging
Z H Zhou, S J Macnab, J Jakana, 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 homologue
V G Preston, J Kennard, F J Rixon, et al.
Page
of 6
Search research articles
Search
Showing results (41-50 of 54) with videos related to
Sort By:
Page
of 6
Journal of Virology
|
November 26, 2010
Seeing the portal in herpes simplex virus type 1 B capsids
R H Rochat, X Liu, K Murata, et al.
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 frame
V G Preston, F J Rixon, I M McDougall, et al.
The Journal of General Virology
|
November 1, 1986
Characterization of the IE110 gene of herpes simplex virus type 1
L J Perry, F J Rixon, R D Everett, et al.
The Journal of General Virology
|
June 1, 1993
Neurons containing latency-associated transcripts are numerous and widespread in dorsal root ganglia following footpad inoculation of mice with herpes simplex virus type 1 mutant in1814
M S Ecob-Prince, C M Preston, F J Rixon, et al.
The Journal of General Virology
|
June 1, 1993
Reactivation in vivo and in vitro of herpes simplex virus from mouse dorsal root ganglia which contain different levels of latency-associated transcripts
M S Ecob-Prince, F J Rixon, C M Preston, et al.
Virology
|
April 30, 1986
The 10K virion phosphoprotein encoded by gene US9 from herpes simplex virus type 1
M C Frame, D J McGeoch, F J Rixon, et al.
Nature Structural Biology
|
November 1, 1995
Assembly of VP26 in herpes simplex virus-1 inferred from structures of wild-type and recombinant capsids
Z H Zhou, J He, J Jakana, 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 VP22a
P Nicholson, C Addison, A M Cross, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
April 18, 1998
Identification of the sites of interaction between the scaffold and outer shell in herpes simplex virus-1 capsids by difference electron imaging
Z H Zhou, S J Macnab, J Jakana, 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 homologue
V G Preston, J Kennard, F J Rixon, et al.
Page
of 6