Published in J Virol on November 01, 1997
Inhibition of virion maturation by simultaneous deletion of glycoproteins E, I, and M of pseudorabies virus. J Virol (1999) 2.52
Role of envelope protein gE endocytosis in the pseudorabies virus life cycle. J Virol (1998) 2.32
Mutation of the YXXL endocytosis motif in the cytoplasmic tail of pseudorabies virus gE. J Virol (1999) 2.13
Anterograde spread of herpes simplex virus type 1 requires glycoprotein E and glycoprotein I but not Us9. J Virol (2009) 1.31
Role of the pseudorabies virus gI cytoplasmic domain in neuroinvasion, virulence, and posttranslational N-linked glycosylation. J Virol (2000) 1.31
A glycine-rich bovine herpesvirus 5 (BHV-5) gE-specific epitope within the ectodomain is important for BHV-5 neurovirulence. J Virol (2004) 0.87
Rapid emergence of a virulent PB2 E627K variant during adaptation of highly pathogenic avian influenza H7N7 virus to mice. Virol J (2013) 0.85
Responses of herpes simplex virus type 1-infected cells to the presence of extracellular antibodies: gE-dependent glycoprotein capping and enhancement in cell-to-cell spread. J Virol (2003) 0.83
The disulfide-bonded structure of feline herpesvirus glycoprotein I. J Virol (1998) 0.76
Primer-directed enzymatic amplification of DNA with a thermostable DNA polymerase. Science (1988) 220.77
Eukaryotic transient-expression system based on recombinant vaccinia virus that synthesizes bacteriophage T7 RNA polymerase. Proc Natl Acad Sci U S A (1986) 32.58
Protein oligomerization in the endoplasmic reticulum. Annu Rev Cell Biol (1989) 8.22
Membrane proteins specified by herpes simplex viruses. V. Identification of an Fc-binding glycoprotein. J Virol (1979) 5.52
Folding and assembly of viral membrane proteins. Virology (1993) 4.63
Identification of a novel herpes simplex virus type 1-induced glycoprotein which complexes with gE and binds immunoglobulin. J Virol (1987) 3.40
Herpes simplex virus glycoproteins E and I facilitate cell-to-cell spread in vivo and across junctions of cultured cells. J Virol (1994) 3.39
Specific pseudorabies virus infection of the rat visual system requires both gI and gp63 glycoproteins. J Virol (1993) 2.92
An analysis of the in vitro and in vivo phenotypes of mutants of herpes simplex virus type 1 lacking glycoproteins gG, gE, gI or the putative gJ. J Gen Virol (1994) 2.92
Pseudorabies virus envelope glycoprotein gI influences both neurotropism and virulence during infection of the rat visual system. J Virol (1992) 2.69
Secretory proteins move through the endoplasmic reticulum membrane via an aqueous, gated pore. Cell (1994) 2.62
Cytoplasmic expression system based on constitutive synthesis of bacteriophage T7 RNA polymerase in mammalian cells. Proc Natl Acad Sci U S A (1990) 2.53
Glycoproteins E and I facilitate neuron-to-neuron spread of herpes simplex virus. J Virol (1995) 2.52
Two alpha-herpesvirus strains are transported differentially in the rodent visual system. Neuron (1991) 2.46
Complex between glycoproteins gI and gp63 of pseudorabies virus: its effect on virus replication. J Virol (1988) 2.24
Analysis of the contributions of herpes simplex virus type 1 membrane proteins to the induction of cell-cell fusion. J Virol (1994) 2.17
Role of pseudorabies virus glycoprotein gI in virus release from infected cells. J Virol (1987) 2.11
A novel function of the herpes simplex virus type 1 Fc receptor: participation in bipolar bridging of antiviral immunoglobulin G. J Virol (1989) 2.08
Glycoprotein gI of pseudorabies virus promotes cell fusion and virus spread via direct cell-to-cell transmission. J Virol (1992) 1.99
Herpes simplex virus type 1 glycoprotein E is not indispensable for viral infectivity. J Virol (1987) 1.92
Receptor properties of two varicella-zoster virus glycoproteins, gpI and gpIV, homologous to herpes simplex virus gE and gI. J Virol (1992) 1.81
The E1 glycoprotein of an avian coronavirus is targeted to the cis Golgi complex. Proc Natl Acad Sci U S A (1990) 1.79
Induction of immunoglobulin G Fc receptors by recombinant vaccinia viruses expressing glycoproteins E and I of herpes simplex virus type 1. J Virol (1990) 1.73
Role of envelope glycoproteins gI, gp63 and gIII in the invasion and spread of Aujeszky's disease virus in the olfactory nervous pathway of the pig. J Gen Virol (1994) 1.73
Varicella-zoster virus glycoprotein gpI/gpIV receptor: expression, complex formation, and antigenicity within the vaccinia virus-T7 RNA polymerase transfection system. J Virol (1993) 1.58
Complementation analysis of pseudorabies virus gE and gI mutants in retinal ganglion cell neurotropism. J Virol (1994) 1.52
Evolutionary relationships of virion glycoprotein genes in the S regions of alphaherpesvirus genomes. J Gen Virol (1990) 1.40
Glycoprotein gE-negative pseudorabies virus has a reduced capability to infect second- and third-order neurons of the olfactory and trigeminal routes in the porcine central nervous system. J Gen Virol (1994) 1.36
Invasion and spread of single glycoprotein deleted mutants of Aujeszky's disease virus (ADV) in the trigeminal nervous pathway of pigs after intranasal inoculation. Vet Microbiol (1994) 1.22
Characterization of regions of herpes simplex virus type 1 glycoprotein E involved in binding the Fc domain of monomeric IgG and in forming a complex with glycoprotein I. J Immunol (1995) 1.19
Spread of herpes simplex virus (HSV) strains SC16, ANG, ANGpath and its glyC minus and GlyE minus mutants in DBA-2 mice. Acta Virol (1990) 1.12
Synthesis, processing, and oligomerization of bovine herpesvirus 1 gE and gI membrane proteins. J Virol (1996) 1.10
Equine herpesvirus type 1 unique short fragment encodes glycoproteins with homology to herpes simplex virus type 1 gD, gI and gE. J Gen Virol (1990) 1.07
A glycoprotein E deletion mutant of bovine herpesvirus 1 is avirulent in calves. J Gen Virol (1994) 1.05
Deleting valine-125 and cysteine-126 in glycoprotein gI of pseudorabies virus strain NIA-3 decreases plaque size and reduces virulence in mice. Arch Virol (1993) 1.00
Biosynthesis of glycoproteins E and I of feline herpesvirus: gE-gI interaction is required for intracellular transport. J Virol (1996) 1.00
The dose response of cats to experimental infection with feline viral rhinotracheitis virus. J Comp Pathol (1979) 0.95
Mapping regions of herpes simplex virus type 1 glycoprotein I required for formation of the viral Fc receptor for monomeric IgG. J Immunol (1997) 0.94
A review of feline viral rhinotracheitis (feline herpesvirus I infection). Comp Immunol Microbiol Infect Dis (1979) 0.88
Protein folding and assembly in the endoplasmic reticulum. EXS (1996) 0.86
Identification of the feline herpesvirus type 1 (FHV-1) genes encoding glycoproteins G, D, I and E: expression of FHV-1 glycoprotein D in vaccinia and raccoon poxviruses. J Gen Virol (1994) 0.84
A feline herpesvirus-1 recombinant with a deletion in the genes for glycoproteins gI and gE is effective as a vaccine for feline rhinotracheitis. Virology (1995) 0.83
Transcriptional analysis of the short segment of the feline herpesvirus type 1 genome and insertional mutagenesis of a unique reading frame. Virology (1995) 0.83
In vivo properties of a feline herpesvirus type 1 mutant carrying a lacZ insertion at the gI locus of the unique short segment. Vaccine (1996) 0.78
Coronaviruses: structure and genome expression. J Gen Virol (1988) 4.77
Isolation and identification of virus-specific mRNAs in cells infected with mouse hepatitis virus (MHV-A59). Virology (1981) 4.01
Retargeting of coronavirus by substitution of the spike glycoprotein ectodomain: crossing the host cell species barrier. J Virol (2000) 3.46
Equine arteritis virus is not a togavirus but belongs to the coronaviruslike superfamily. J Virol (1991) 3.35
Nucleocapsid-independent assembly of coronavirus-like particles by co-expression of viral envelope protein genes. EMBO J (1996) 3.33
Flaviviridae. Intervirology (1985) 3.06
Middle East Respiratory Syndrome coronavirus (MERS-CoV) serology in major livestock species in an affected region in Jordan, June to September 2013. Euro Surveill (2013) 2.97
Characterization of the budding compartment of mouse hepatitis virus: evidence that transport from the RER to the Golgi complex requires only one vesicular transport step. J Cell Biol (1994) 2.92
Sequence of mouse hepatitis virus A59 mRNA 2: indications for RNA recombination between coronaviruses and influenza C virus. Virology (1988) 2.83
Feline coronavirus type II strains 79-1683 and 79-1146 originate from a double recombination between feline coronavirus type I and canine coronavirus. J Virol (1998) 2.74
Translation of three mouse hepatitis virus strain A59 subgenomic RNAs in Xenopus laevis oocytes. J Virol (1981) 2.69
Recent advances in pestivirus research. J Gen Virol (1989) 2.67
Synthesis of subgenomic mRNA's of mouse hepatitis virus is initiated independently: evidence from UV transcription mapping. J Virol (1981) 2.65
Coronavirus M proteins accumulate in the Golgi complex beyond the site of virion budding. J Virol (1994) 2.27
Viral protein synthesis in mouse hepatitis virus strain A59-infected cells: effect of tunicamycin. J Virol (1981) 2.27
Structural proteins of equine arteritis virus. J Virol (1992) 2.23
Intracellular transport of recombinant coronavirus spike proteins: implications for virus assembly. J Virol (1990) 2.21
Primary structure of the glycoprotein E2 of coronavirus MHV-A59 and identification of the trypsin cleavage site. Virology (1987) 2.16
Evidence for a coiled-coil structure in the spike proteins of coronaviruses. J Mol Biol (1987) 2.07
Togaviridae. Intervirology (1985) 1.96
Subgenomic RNA synthesis directed by a synthetic defective interfering RNA of mouse hepatitis virus: a study of coronavirus transcription initiation. J Virol (1994) 1.85
Evidence for the loop model of signal-sequence insertion into the endoplasmic reticulum. Proc Natl Acad Sci U S A (1988) 1.84
Envelope glycoprotein interactions in coronavirus assembly. J Cell Biol (1995) 1.79
Sequence relationships between the genome and the intracellular RNA species 1, 3, 6, and 7 of mouse hepatitis virus strain A59. J Virol (1982) 1.78
Coronavirus particle assembly: primary structure requirements of the membrane protein. J Virol (1998) 1.74
All subgenomic mRNAs of equine arteritis virus contain a common leader sequence. Nucleic Acids Res (1990) 1.74
The molecular genetics of feline coronaviruses: comparative sequence analysis of the ORF7a/7b transcription unit of different biotypes. Virology (1995) 1.68
The carboxyl-terminal part of the putative Berne virus polymerase is expressed by ribosomal frameshifting and contains sequence motifs which indicate that toro- and coronaviruses are evolutionarily related. Nucleic Acids Res (1990) 1.68
Early death after feline infectious peritonitis virus challenge due to recombinant vaccinia virus immunization. J Virol (1990) 1.66
Phylogeny of antigenic variants of avian coronavirus IBV. Virology (1989) 1.65
Homologous RNA recombination allows efficient introduction of site-specific mutations into the genome of coronavirus MHV-A59 via synthetic co-replicating RNAs. Nucleic Acids Res (1992) 1.64
Characterization of the coronavirus mouse hepatitis virus strain A59 small membrane protein E. J Virol (2000) 1.64
Bunyaviruses and Bunyaviridae. Intervirology (1976) 1.58
O-glycosylation of the coronavirus M protein. Differential localization of sialyltransferases in N- and O-linked glycosylation. J Biol Chem (1992) 1.57
Detection of feline coronavirus RNA in feces, tissues, and body fluids of naturally infected cats by reverse transcriptase PCR. J Clin Microbiol (1995) 1.57
Synthesis and processing of the nonstructural polyproteins of several temperature-sensitive mutants of Sindbis virus. Virology (1990) 1.50
Toroviruses of animals and humans: a review. Adv Virus Res (1994) 1.50
Antigenic relationships among homologous structural polypeptides of porcine, feline, and canine coronaviruses. Infect Immun (1982) 1.43
Guidelines for the vaccination of dogs and cats. Compiled by the Vaccination Guidelines Group (VGG) of the World Small Animal Veterinary Association (WSAVA). J Small Anim Pract (2007) 1.41
Coronavirus E1 glycoprotein expressed from cloned cDNA localizes in the Golgi region. J Virol (1987) 1.41
Mice lacking IL-12 develop polarized Th1 cells during viral infection. J Immunol (1998) 1.38
Predicted membrane topology of the coronavirus protein E1. Biochemistry (1986) 1.38
Comment on "Patel JR, Heldens JGM. Review of companion animal viral diseases and immunoprophylaxis" (Vaccine 2009;27:491-504). Vaccine (2009) 1.37
Mapping of the coronavirus membrane protein domains involved in interaction with the spike protein. J Virol (1999) 1.37
Purification and partial characterization of a new enveloped RNA virus (Berne virus). J Gen Virol (1983) 1.37
The peplomer protein sequence of the M41 strain of coronavirus IBV and its comparison with Beaudette strains. Virus Res (1986) 1.37
Membrane assembly of the triple-spanning coronavirus M protein. Individual transmembrane domains show preferred orientation. J Biol Chem (1992) 1.35
Enhancement of the vaccinia virus/phage T7 RNA polymerase expression system using encephalomyocarditis virus 5'-untranslated region sequences. Gene (1991) 1.34
Assembly of spikes into coronavirus particles is mediated by the carboxy-terminal domain of the spike protein. J Virol (2000) 1.34
Discontinuous and non-discontinuous subgenomic RNA transcription in a nidovirus. EMBO J (2002) 1.32
Persistence and evolution of feline coronavirus in a closed cat-breeding colony. Virology (1997) 1.32
Assembly of the coronavirus envelope: homotypic interactions between the M proteins. J Virol (2000) 1.30
Oligomerization of a trans-Golgi/trans-Golgi network retained protein occurs in the Golgi complex and may be part of its retention. J Biol Chem (1995) 1.30
Primary structure of the membrane and nucleocapsid protein genes of feline infectious peritonitis virus and immunogenicity of recombinant vaccinia viruses in kittens. Virology (1991) 1.29
A single mutation within the V3 envelope neutralization domain of feline immunodeficiency virus determines its tropism for CRFK cells. J Virol (1995) 1.28
WSAVA guidelines for the vaccination of dogs and cats. J Small Anim Pract (2010) 1.27
IFN-gamma receptor-deficient mice generate antiviral Th1-characteristic cytokine profiles but altered antibody responses. J Immunol (1994) 1.26
Equine arteritis virus-infected cells contain six polyadenylated virus-specific RNAs. Virology (1982) 1.25
Togaviridae. Intervirology (1978) 1.24
Intracellular RNAs of the feline infectious peritonitis coronavirus strain 79-1146. J Gen Virol (1987) 1.24
Comparison of the genome organization of toro- and coronaviruses: evidence for two nonhomologous RNA recombination events during Berne virus evolution. Virology (1991) 1.22
Disulfide bonds in folding and transport of mouse hepatitis coronavirus glycoproteins. J Virol (1993) 1.21
Stably expressed FIPV peplomer protein induces cell fusion and elicits neutralizing antibodies in mice. Virology (1989) 1.19
cDNA cloning and sequence analysis of the gene encoding the peplomer protein of feline infectious peritonitis virus. J Gen Virol (1987) 1.19
Toroviruses: replication, evolution and comparison with other members of the coronavirus-like superfamily. J Gen Virol (1993) 1.18
Highly pathogenic avian influenza H5N1 virus in cats and other carnivores. Vet Microbiol (2007) 1.18
Isolation and characterization of nuclear genes coding for subunits of the yeast ubiquinol-cytochrome c reductase complex. Gene (1982) 1.18
IL-12 stimulates an antiviral type 1 cytokine response but lacks adjuvant activity in IFN-gamma-receptor-deficient mice. J Immunol (1995) 1.17
The cytoplasmic tail of mouse hepatitis virus M protein is essential but not sufficient for its retention in the Golgi complex. J Biol Chem (1994) 1.16
Folding of viral envelope glycoproteins in the endoplasmic reticulum. Traffic (2000) 1.15
The inhibition of cowpea mosaic virus replication by actinomycin D. Virology (1979) 1.15
The small envelope glycoprotein (GS) of equine arteritis virus folds into three distinct monomers and a disulfide-linked dimer. J Virol (1995) 1.15
Identification of a neutralization site in the major envelope glycoprotein (GL) of equine arteritis virus. Virology (1995) 1.15
A 3'-coterminal nested set of independently transcribed mRNAs is generated during Berne virus replication. J Virol (1990) 1.14