55
Views
0
CrossRef citations to date
0
Altmetric
Short Communication

Nectin-1 (HveC) is expressed at high levels in neural subtypes that regulate radial migration of cortical and cerebellar neurons of the developing human and murine brain

, , , , , , & show all
Pages 164-172 | Received 13 Jun 2007, Accepted 29 Dec 2007, Published online: 10 Jul 2009

References

  • Braun E, Zimmerman T, Hur T B, Reinhartz E, Fellig Y, Panet A, Steiner I. Neurotropism of herpes simplex virus type 1 in brain organ cultures. J Gen Virol 2006; 87: 2827–2837
  • Fazakerley J K. Neurovirology and developmental neurobiology. Adv Virus Res 2001; 56: 73–124
  • Geraghty R J, Krummenacher C, Cohen G H, Eisenberg R J, Spear P G. Entry of alphaherpesviruses mediated by poliovirus receptor-related protein 1 and poliovirus receptor. Science 1998; 280: 1618–1620
  • Guzman G, Oh S, Shukla D, Engelhard H H, Valyi-Nagy T. Expression of entry receptor nectin-1 of herpes simplex virus 1 and/or herpes simplex virus 2 in normal and neoplastic human nervous system tissues. Acta Virol 2006; 50: 59–66
  • Honda T, Sakisaka T, Yamada T, Kumazawa N, Hoshino T, Kajita M, Kayahara T, Ishizaki H, Tanaka-Okamoto M, Mizoguchi A, Manabe T, Miyoshi J, Takai Y. Involvement of nectins in the formation of puncta adherentia junctions and the mossy fiber trajectory in the mouse hippocampus. Mol Cell Neurosci 2006; 31: 315–325
  • Horvath S, Prandovszky E, Kis Z, Krummenacher C, Eisenberg R J, Cohen G H, Janka Z, Toldi J. Spatiotemporal changes of the herpes simplex virus entry receptor nectin-1 in murine brain during postnatal development. J NeuroVirol 2006; 12: 161–70
  • Hutto C, Arvin A, Jacobs R, Steele R, Stagno S, Lyrene R, Willett L, Powell D, Andersen R, Werthammer J, et al. Intrauterine herpes simplex virus infections. J Pediatr 1987; 110: 97–101
  • Inagaki M, Irie K, Deguchi-Tawarada M, Ikeda W, Ohtsuka T, Takeuchi M, Takai Y. Nectin-dependent localization of ZO-1 at puncta adhaerentia junctions between the mossy fiber terminals and the dendrites of the pyramidal cells in the CA3 area of adult mouse hippocampus. J Comp Neurol 2003; 460: 514–524
  • Inagaki M, Irie K, Ishizaki H, Tanaka-Okamoto M, Morimoto K, Inoue E, Ohtsuka T, Miyoshi J, Takai Y. Roles of cell-adhesion molecules nectin 1 and nectin 3 in ciliary body development. Development 2005; 132: 1525–1537
  • Kennedy P GE, Chaudhuri A. Herpes simplex encephalitis. J Neurol Neurosurg Psychiatry 2002; 73: 237–238
  • Kimberlin D W. Neonatal herpes simplex infection. Clin Microbiol Rev 2004; 1–13
  • Kristensson K. Experimental herpes simplex virus infection in the immature mouse brain. Acta Neuropathol (Berl) 1976; 35: 343–351
  • Krummenacher C, Baribaud F, Ponce de Leon M, Baribaud I, Whitbeck J C, Xu R, Cohen G H, Eisenberg R J. Comparative usage of herpesvirus entry mediator A and nectin-1 by laboratory strains and clinical isolates of herpes simplex virus. Virology 2004; 322: 286–299
  • Krummenacher C, Rux A H, Whitbeck J C, Ponce-de-Leon M, Lou H, Baribaud I, Hou W, Zou C, Geraghty R J, Spear P G, Eisenberg R J, Cohen G H. The first immunoglobulin-like domain of HveC is sufficient to bind herpes simplex virus gD with full affinity, while the third domain is involved in oligomerization of HveC. J Virol 1999; 73: 8127–8137
  • Lennette E H, Koprowski H. Influence of age on the susceptibility of mice to infection with certain neurotropic viruses. J Immunol 1944; 49: 175–199
  • Mata M, Zhang M, Hu X, Fink D J. HveC (nectin-1) is expressed at high levels in sensory neurons, but not in motor neurons, of the rat peripheral nervous system. J NeuroVirol 2001; 7: 476–480
  • Radbill A E, Reddy A T, Markert J M, Wyss J M, Pike M M, Akella N S, Bharara N, Gillespie G Y. Effects of G207, a conditionally replication-competent oncolytic herpes simplex virus, on the developing mammalian brain. J NeuroVirol 2007; 13: 118–29
  • Rakic P. Specification of cerebral cortical areas. Science 1988; 241: 170–176
  • Rakic P. A Century of progress in corticoneurogenesis: from silver impregnation to genetic engineering. Cereb Cortex 2006; 16: i3–i17
  • Reya T, Morrison S J, Clarke M F, Weissman I L. Stem cells, cancer, and cancer stem cells. Nature 2001; 414: 105–111
  • Rueger M A, Winkeler A, Miletic H, Kaestle C, Richter R, Schneider G, Hilker R, Heneka M T, Ernestus R I, Hampl J A, Fraefel C, Jacobs A H. Variability in infectivity of primary cell cultures of human brain tumors with HSV-1 amplicon vectors. Gene Ther 2005; 12: 588–596
  • Schweighardt B, Atwood W J. Virus receptors in the human central nervous system. J NeuroVirol 2001; 7: 187–95
  • Shukla D, Liu J, Blaiklock P, Shworak N W, Bai X, Esko J D, Cohen G H, Eisenberg R J, Rosenberg R D, Spear P G. A novel role for 3-O-sulfated heparan sulfate in herpes simplex virus 1 entry. Cell 1999; 99: 13–22
  • Shukla D, Scanlan P M, Tiwari V, Sheth V, Clement C, Guzman-Hartman G, Dermody T S, Valyi-Nagy T. Expression of nectin-1 in normal and herpes simplex virus type 1-infected murine brain. Appl Immunohistochem Mol Morphol 2006; 14: 341–347
  • Simpson S A, Manchak M D, Hager E J, Krummenacher C, Whitbeck J C, Levin M J, Freed C R, Wilcox C L, Cohen G H, Eisenberg R J, Pizer L I. Nectin-1/HveC mediates herpes simplex virus type 1 entry into primary human sensory neurons and fibroblasts. J NeuroVirol 2005; 11: 208–218
  • Takahashi K, Nakanishi H, Miyahara M, Mandai K, Satoh K, Satoh A, Nishioka H, Aoki J, Nomoto A, Mizoguchi A, Takai Y. Nectin/PRR: an immunoglobulin-like cell adhesion molecule recruited to cadherin-based adherens junctions through interaction with Afadin, a PDZ domain-containing protein. J Cell Biol 1999; 145: 539–549
  • Tyler K L. Herpes simplex virus infections of the central nervous system: encephalitis and meningitis, including Mollaret's. Herpes 2004a; 11(Suppl 2)57A–64A
  • Tyler K L. Update on herpes simplex encephalitis. Rev Neurol Dis 2004b; 1: 169–178
  • Warner M S, Geraghty R J, Martinez W M, Montgomery R I, Whitbeck J C, Xu R, Eisenberg R J, Cohen G H, Spear P G. A cell surface protein with herpesvirus entry activity (HveB) confers susceptibility to infection by mutants of herpes simplex virus type 1, herpes simplex virus type 2, and pseudorabies virus. Virology 1998; 246: 179–189
  • Yamamoto T, Otani S, Shiraki H. The influence of age on infection in experimental herpes simplex encephalo-myelo-neuritis of mice as demonstrated by fluorescent antibody method. Acta Neuropathol (Berl) 1967; 11: 221–236

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.