Published in Rev Med Virol on July 01, 1997
The UL6 gene product forms the portal for entry of DNA into the herpes simplex virus capsid. J Virol (2001) 3.65
RNA is a structural element in retrovirus particles. Proc Natl Acad Sci U S A (2001) 3.45
Molecular biology of pseudorabies virus: impact on neurovirology and veterinary medicine. Microbiol Mol Biol Rev (2005) 3.06
A null mutation in the UL36 gene of herpes simplex virus type 1 results in accumulation of unenveloped DNA-filled capsids in the cytoplasm of infected cells. J Virol (2000) 2.90
The product of the herpes simplex virus type 1 UL25 gene is required for encapsidation but not for cleavage of replicated viral DNA. J Virol (1998) 2.81
Determination of interactions between tegument proteins of herpes simplex virus type 1. J Virol (2005) 2.31
Herpes simplex virus DNA cleavage and packaging proteins associate with the procapsid prior to its maturation. J Virol (2001) 2.21
Physical interaction between envelope glycoproteins E and M of pseudorabies virus and the major tegument protein UL49. J Virol (2002) 2.19
The UL48 tegument protein of pseudorabies virus is critical for intracytoplasmic assembly of infectious virions. J Virol (2002) 1.97
Isolation of herpes simplex virus procapsids from cells infected with a protease-deficient mutant virus. J Virol (2000) 1.90
Assembly of the herpes simplex virus procapsid from purified components and identification of small complexes containing the major capsid and scaffolding proteins. J Virol (1999) 1.79
Identification of proteins associated with murine gammaherpesvirus 68 virions. J Virol (2003) 1.75
Herpes simplex virus DNA packaging sequences adopt novel structures that are specifically recognized by a component of the cleavage and packaging machinery. Proc Natl Acad Sci U S A (2001) 1.69
Temporal association of the herpes simplex virus genome with histone proteins during a lytic infection. J Virol (2007) 1.66
Sequence analysis of bacteriophage T4 DNA packaging/terminase genes 16 and 17 reveals a common ATPase center in the large subunit of viral terminases. Nucleic Acids Res (2002) 1.61
Differing roles of inner tegument proteins pUL36 and pUL37 during entry of herpes simplex virus type 1. J Virol (2008) 1.60
Packaging of genomic and amplicon DNA by the herpes simplex virus type 1 UL25-null mutant KUL25NS. J Virol (2001) 1.57
DNA cleavage and packaging proteins encoded by genes U(L)28, U(L)15, and U(L)33 of herpes simplex virus type 1 form a complex in infected cells. J Virol (2002) 1.51
Herpes simplex virus capsid structure: DNA packaging protein UL25 is located on the external surface of the capsid near the vertices. J Virol (2006) 1.49
Evidence for controlled incorporation of herpes simplex virus type 1 UL26 protease into capsids. J Virol (2000) 1.43
Crystal structure of the DNA-recognition component of the bacterial virus Sf6 genome-packaging machine. Proc Natl Acad Sci U S A (2010) 1.42
Complete sequence and comparative analysis of the genome of herpes B virus (Cercopithecine herpesvirus 1) from a rhesus monkey. J Virol (2003) 1.37
Packaging-competent capsids of a herpes simplex virus temperature-sensitive mutant have properties similar to those of in vitro-assembled procapsids. J Virol (1999) 1.36
Temporal dynamics of cytomegalovirus chromatin assembly in productively infected human cells. J Virol (2008) 1.35
L1 interaction domains of papillomavirus l2 necessary for viral genome encapsidation. J Virol (2001) 1.34
The herpes simplex virus type 1 DNA packaging protein UL17 is a virion protein that is present in both the capsid and the tegument compartments. J Virol (2005) 1.32
Novel class of thiourea compounds that inhibit herpes simplex virus type 1 DNA cleavage and encapsidation: resistance maps to the UL6 gene. J Virol (2000) 1.30
The UL25 protein of pseudorabies virus associates with capsids and localizes to the nucleus and to microtubules. J Virol (2000) 1.30
Assembly of the herpes simplex virus capsid: identification of soluble scaffold-portal complexes and their role in formation of portal-containing capsids. J Virol (2003) 1.26
Scaffold expulsion and genome packaging trigger stabilization of herpes simplex virus capsids. Proc Natl Acad Sci U S A (2009) 1.25
Viral capsids: mechanical characteristics, genome packaging and delivery mechanisms. Cell Mol Life Sci (2007) 1.24
Role of the UL25 protein in herpes simplex virus DNA encapsidation. J Virol (2008) 1.23
Labeling and localization of the herpes simplex virus capsid protein UL25 and its interaction with the two triplexes closest to the penton. J Mol Biol (2010) 1.23
Handedness of the herpes simplex virus capsid and procapsid. J Virol (2002) 1.21
Involvement of the portal at an early step in herpes simplex virus capsid assembly. J Virol (2005) 1.21
Deletion of Epstein-Barr virus BFLF2 leads to impaired viral DNA packaging and primary egress as well as to the production of defective viral particles. J Virol (2008) 1.17
Structural characterization of the UL25 DNA-packaging protein from herpes simplex virus type 1. J Virol (2006) 1.14
Herpesvirus capsid assembly: insights from structural analysis. Curr Opin Virol (2011) 1.13
Inhibition of herpes simplex virus replication by WAY-150138: assembly of capsids depleted of the portal and terminase proteins involved in DNA encapsidation. J Virol (2002) 1.11
Double-stranded DNA bacteriophage prohead protease is homologous to herpesvirus protease. Protein Sci (2004) 1.10
Genetic analysis of the vaccinia virus I6 telomere-binding protein uncovers a key role in genome encapsidation. J Virol (2003) 1.10
Entrapment of viral capsids in nuclear PML cages is an intrinsic antiviral host defense against varicella-zoster virus. PLoS Pathog (2011) 1.10
The major determinant for addition of tegument protein pUL48 (VP16) to capsids in herpes simplex virus type 1 is the presence of the major tegument protein pUL36 (VP1/2). J Virol (2009) 1.06
Epstein-Barr virus mRNA export factor EB2 is essential for intranuclear capsid assembly and production of gp350. J Virol (2005) 1.05
Effects of mutations within the herpes simplex virus type 1 DNA encapsidation signal on packaging efficiency. J Virol (2001) 1.05
Uncoating the herpes simplex virus genome. J Mol Biol (2007) 1.04
Small capsid protein pORF65 is essential for assembly of Kaposi's sarcoma-associated herpesvirus capsids. J Virol (2008) 1.04
Proteolytic cleavage of the amino terminus of the U(L)15 gene product of herpes simplex virus type 1 is coupled with maturation of viral DNA into unit-length genomes. J Virol (1999) 1.03
Localization of herpes simplex virus type 1 UL37 in the Golgi complex requires UL36 but not capsid structures. J Virol (2008) 1.02
Identification of a region in the herpes simplex virus scaffolding protein required for interaction with the portal. J Virol (2005) 1.01
Quantification of the DNA cleavage and packaging proteins U(L)15 and U(L)28 in A and B capsids of herpes simplex virus type 1. J Virol (2004) 1.00
Murine gammaherpesvirus 68 ORF52 encodes a tegument protein required for virion morphogenesis in the cytoplasm. J Virol (2007) 1.00
The structure of the herpes simplex virus DNA-packaging terminase pUL15 nuclease domain suggests an evolutionary lineage among eukaryotic and prokaryotic viruses. J Virol (2013) 0.99
Inner tegument protein pUL37 of herpes simplex virus type 1 is involved in directing capsids to the trans-Golgi network for envelopment. J Gen Virol (2010) 0.98
The herpes simplex virus triplex protein, VP23, exists as a molten globule. J Virol (1998) 0.98
Structure of the pseudorabies virus capsid: comparison with herpes simplex virus type 1 and differential binding of essential minor proteins. J Mol Biol (2013) 0.97
Characterization of a novel virus causing a lethal disease in carp and koi. Microbiol Mol Biol Rev (2006) 0.95
Activation and evasion of innate antiviral immunity by herpes simplex virus. Viruses (2009) 0.94
Amino acids 143 to 150 of the herpes simplex virus type 1 scaffold protein are required for the formation of portal-containing capsids. J Virol (2008) 0.93
Functional domains of the HK97 capsid maturation protease and the mechanisms of protein encapsidation. J Mol Biol (2013) 0.93
Time-dependent transformation of the herpesvirus tegument. J Virol (2009) 0.92
Self-assembly of Epstein-Barr virus capsids. J Virol (2009) 0.92
Identification, subviral localization, and functional characterization of the pseudorabies virus UL17 protein. J Virol (2005) 0.92
Improper tagging of the non-essential small capsid protein VP26 impairs nuclear capsid egress of herpes simplex virus. PLoS One (2012) 0.92
Mutational analysis of the herpes simplex virus type 1 UL25 DNA packaging protein reveals regions that are important after the viral DNA has been packaged. J Virol (2010) 0.91
The UL14 tegument protein of herpes simplex virus type 1 is required for efficient nuclear transport of the alpha transinducing factor VP16 and viral capsids. J Virol (2007) 0.89
Oncolytic viruses & their specific targeting to tumour cells. Indian J Med Res (2012) 0.89
Dynamic motions of free and bound O29 scaffolding protein identified by hydrogen deuterium exchange mass spectrometry. Protein Sci (2006) 0.87
Structural and functional studies of the phage Sf6 terminase small subunit reveal a DNA-spooling device facilitated by structural plasticity. J Mol Biol (2012) 0.86
Cyclooxygenase-1 and -2 are required for production of infectious pseudorabies virus. J Virol (2004) 0.86
The capsid protein encoded by U(L)17 of herpes simplex virus 1 interacts with tegument protein VP13/14. J Virol (2010) 0.85
Reconstitution of herpes simplex virus type 1 nuclear capsid egress in vitro. J Virol (2006) 0.84
The delta domain of the HK97 major capsid protein is essential for assembly. Virology (2014) 0.83
Chromatin assembly on herpes simplex virus genomes during lytic infection. Biochim Biophys Acta (2009) 0.83
A putative leucine zipper within the herpes simplex virus type 1 UL6 protein is required for portal ring formation. J Virol (2007) 0.83
A domain in the herpes simplex virus 1 triplex protein VP23 is essential for closure of capsid shells into icosahedral structures. J Virol (2011) 0.83
Exploring the Balance between DNA Pressure and Capsid Stability in Herpesviruses and Phages. J Virol (2015) 0.82
Maturation and vesicle-mediated egress of primate gammaherpesvirus rhesus monkey rhadinovirus require inner tegument protein ORF52. J Virol (2014) 0.82
Analysis of herpes simplex virus type 1 DNA packaging signal mutations in the context of the viral genome. J Virol (2010) 0.82
DNA methyltransferase DNMT3A associates with viral proteins and impacts HSV-1 infection. Proteomics (2015) 0.81
Identification of a novel linear B-cell epitope in the UL26 and UL26.5 proteins of Duck Enteritis Virus. Virol J (2010) 0.80
Proline and tyrosine residues in scaffold proteins of herpes simplex virus 1 critical to the interaction with portal protein and its incorporation into capsids. J Virol (2009) 0.79
Identification of a varicella-zoster virus replication inhibitor that blocks capsid assembly by interacting with the floor domain of the major capsid protein. J Virol (2012) 0.79
Major capsid reinforcement by a minor protein in herpesviruses and phage. Nucleic Acids Res (2014) 0.79
The putative herpes simplex virus 1 chaperone protein UL32 modulates disulfide bond formation during infection. J Virol (2014) 0.79
A hydrophobic domain within the small capsid protein of Kaposi's sarcoma-associated herpesvirus is required for assembly. J Gen Virol (2014) 0.78
Intracellular Cre-mediated deletion of the unique packaging signal carried by a herpes simplex virus type 1 recombinant and its relationship to the cleavage-packaging process. J Virol (2000) 0.78
Assembly of Epstein-Barr Virus Capsid in Promyelocytic Leukemia Nuclear Bodies. J Virol (2015) 0.78
The host outer membrane proteins OmpA and OmpC are associated with the Shigella phage Sf6 virion. Virology (2010) 0.78
The assembly domain of the small capsid protein of Kaposi's sarcoma-associated herpesvirus. J Virol (2012) 0.78
Expression of the HSV-1 capsid protein VP19C in Escherichia coli: a single amino acid change overcomes an expression block of the full-length polypeptide. Protein Expr Purif (2010) 0.77
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