Sfoglia per Autore
Novel, soluble isoform of the herpes simplex virus (HSV) receptor nectin1 (or PRR1-HIgR-HveC) modulates positively and negatively susceptibility to HSV infection
2001 Lopez M.; Cocchi F.; Avitabile E.; Leclerc A.; Adelaide J.; Campadelli-Fiume G.; Dubreuil P.
Substitution in the murine nectin1 receptor of a single conserved amino acid at a position distal from the herpes simplex virus gD binding site confers high-affinity binding to gD
2002 Menotti L.; Casadio R.; Bertucci C.; Lopez M.; Campadelli-Fiume G.
Critical residues in the CC′ ridge of the human nectin1 receptor V domain enable herpes simplex virus entry into the cell and act synergistically with the downstream region
2002 Menotti L.; Cocchi F.; Campadelli-Fiume G.
Prominent role of the Ig-like V domain in trans-interactions of nectins. Nectin3 and nectin4 bind to the predicted C-C′-C″-D β-strands of the nectin1 V domain
2002 Fabre S.; Reymond N.; Cocchi F.; Menotti L.; Dubreuil P.; Campadelli-Fiume G.; Lopez M.
The domains of glycoprotein D required to block apoptosis induced by herpes simplex virus 1 are largely distinct from those involved in cell-cell fusion and binding to nectin1
2003 Zhou G.; Avitabile E.; Campadelli-Fiume G.; Roizman B.
Herpes simplex virus glycoprotein K, but not its syncytial allele, inhibits cell-cell fusion mediated by the four fusogenic glycoproteins, gD, gB, gH, and gL
2003 Avitabile E.; Lombardi G.; Campadelli-Fiume G.
Entry of herpes simplex virus mediated by chimeric forms of nectin1 retargeted to endosomes or to lipid rafts occurs through acidic endosomes.
2004 GIANNI T.; CAMPADELLI-FIUME G.; MENOTTI L.
The herpes simplex virus JMP mutant enters receptor-negative J cells through a novel pathway independent of the known receptors nectin1, HveA, and nectin2.
2004 COCCHI F.; MENOTTI L.; DI NINNI V.; LOPEZ M.; CAMPADELLI-FIUME G.
Coexpression of UL20p and gK inhibits cell-cell fusion mediated by herpes simplex virus glycoproteins gD, gH-gL, and wild-type gB or an endocytosis-defective gB mutant and downmodulates their cell surface expression.
2004 AVITABILE E.; LOMBARDI G.; GIANNI T.; CAPRI M.; CAMPADELLI-FIUME G.
The soluble ectodomain of herpes simplex virus gD contains a membrane-proximal pro-fusion domain and suffices to mediate virus entry.
2004 COCCHI F.; FUSCO D.; MENOTTI L.; GIANNI T.; EISENBERG R.J.; COHEN G.H.; CAMPADELLI-FIUME G.
MODIFICAZIONE DEL TROPISMO DEL VIRUS HERPES SIMPLEX VERSO RECETTORI SELEZIONATI
2005 Campadelli-Fiume G.; Menotti L.
A heptad repeat in herpes simplex virus-1 gH, located downstream of the α-helix with attributes of a fusion peptide, is critical for virus entry and fusion.
2005 GIANNI T.; MENOTTI L.; CAMPADELLI-FIUME G.
The ectodomain of herpes simplex virus glycoprotein H contains a membrane alpha-helix with attributes of an internal fusion peptide, positionally conserved in the herpesviridae family.
2005 GIANNI T.; MARTELLI P.L.; CASADIO R.; CAMPADELLI-FIUME G.
The pro-fusion domain of herpes simplex virus glycoprotein D (gD) interacts with the gD N terminus and is displaced by soluble forms of viral receptors.
2005 Fusco D.; Forghieri C.; Campadelli-Fiume G.
Heptad repeat 2 in herpes simplex virus 1 gH interacts with heptad repeat 1 and is critical for virus entry and fusion.
2006 Gianni T.; Piccoli A.; Bertucci C.; Campadelli-Fiume G.;
The egress of herpesviruses from cells: the unanswered questions.
2006 Campadelli-Fiume G.; Roizman B.
A herpes simplex virus recombinant that exhibits a single-chain antibody to HER2/neu enters cells through the mammary tumor receptor, independently of the gD receptors.
2006 Menotti L.; Cerretani A.; Campadelli-Fiume G.
HSV glycoproteins and their roles in virus entry and egress
2006 G. Campadelli-Fiume; T. Gianni
Hydrophobic alpha-helices 1 and 2 of herpes simplex virus gH interact with lipids, and their mimetic peptides enhance virus infection and fusion.
2006 Gianni T.; Fato R.; Bergamini C.; Lenaz G.; Campadelli-Fiume G.
The multipartite system that mediates entry of herpes simplex virus into the cell
2007 Campadelli-Fiume G.; Amasio M.; Avitabile E.; Cerretani A.; Forghieri C.; Gianni T; Menotti L.
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