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PMID: 1673787 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Poliovirus can enter and infect mammalian cells by way of an intercellular adhesion molecule 1 pathway.

Selinka HC, Zibert A, Wimmer E

Abstract

Mouse fibroblast cell lines were transfected with truncated forms of the human poliovirus receptor (PVR) cDNA and tested for the expression of functional receptors for poliovirus. Several receptor constructs, all containing the coding region of the first 143 amino acids of PVR, were able to render mouse cells susceptible to poliovirus infection. A deletion of 65 amino acids in the first extracellular domain of PVR prevented virus attachment and infection. These data suggest that domain 1 is necessary and sufficient for the virus-receptor interaction. A PVR/intercellular adhesion molecule 1 hybrid receptor, expressing the PVR variable domain on a truncated receptor molecule for human rhinovirus 14, was shown to be a functional receptor for poliovirus. This observation indicates that, subsequent to attachment to the PVR-binding domain, poliovirus can use the same pathway as the major receptor group rhinoviruses to enter cells.

MeSH Terms
Animals Base Sequence Cell Adhesion Molecules/physiology Cloning, Molecular DNA Mutational Analysis In Vitro Techniques Intercellular Adhesion Molecule-1 Mice Molecular Sequence Data Oligonucleotides/chemistry Poliovirus/genetics Polymerase Chain Reaction Receptors, Virus/physiology Structure-Activity Relationship Transfection Virus Replication
Chemicals
Cell Adhesion Molecules Oligonucleotides Receptors, Virus Intercellular Adhesion Molecule-1
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Selinka H C
Department of Microbiology, State University of New York, Stony Brook 11794.
Zibert A
Wimmer E
References (35)
35 references, click to expand
  1. The mammalian cell-virus relationship. IV. Infection of naturally insusceptible cells with enterovirus ribonucleic acid.
    J Exp Med. 1959 Jul 1;110(1):65-80 PMID: 13664869
  2. Unrelated animal viruses share receptors.
    Nature. 1976 Feb 26;259(5545):679-81 PMID: 175292
  3. Transgenic mice expressing a human poliovirus receptor: a new model for poliomyelitis.
    Cell. 1990 Oct 19;63(2):353-62 PMID: 2170026
  4. The poliovirus receptor protein is produced both as membrane-bound and secreted forms.
    EMBO J. 1990 Oct;9(10):3217-24 PMID: 2170108
  5. The cell attachment site on foot-and-mouth disease virus includes the amino acid sequence RGD (arginine-glycine-aspartic acid).
    J Gen Virol. 1989 Mar;70 ( Pt 3):625-37 PMID: 2543752
  6. Initiation of protein synthesis by internal entry of ribosomes into the 5' nontranslated region of encephalomyocarditis virus RNA in vivo.
    J Virol. 1989 Apr;63(4):1651-60 PMID: 2538648
  7. Cellular receptor for poliovirus: molecular cloning, nucleotide sequence, and expression of a new member of the immunoglobulin superfamily.
    Cell. 1989 Mar 10;56(5):855-65 PMID: 2538245
  8. Transformation of a human poliovirus receptor gene into mouse cells.
    Proc Natl Acad Sci U S A. 1986 Oct;83(20):7845-9 PMID: 3020560
  9. Capsid protein VP4 of poliovirus is N-myristoylated.
    Proc Natl Acad Sci U S A. 1987 Nov;84(22):7827-31 PMID: 2825164
  10. Evidence for the direct involvement of the rhinovirus canyon in receptor binding.
    Proc Natl Acad Sci U S A. 1988 Aug;85(15):5449-53 PMID: 2840661
  11. Production of a monoclonal antibody against an epitope on HeLa cells that is the functional poliovirus binding site.
    J Gen Virol. 1985 Dec;66 ( Pt 12):2563-9 PMID: 2999307
  12. Structure of a human common cold virus and functional relationship to other picornaviruses.
    Nature. 1985 Sep 12-18;317(6033):145-53 PMID: 2993920
  13. Three-dimensional structure of poliovirus at 2.9 A resolution.
    Science. 1985 Sep 27;229(4720):1358-65 PMID: 2994218
  14. Purification of a HeLa cell receptor protein for group B coxsackieviruses.
    J Virol. 1985 Sep;55(3):560-6 PMID: 2991580
  15. The immunoglobulin superfamily--domains for cell surface recognition.
    Annu Rev Immunol. 1988;6:381-405 PMID: 3289571
  16. Binding region for human immunodeficiency virus (HIV) and epitopes for HIV-blocking monoclonal antibodies of the CD4 molecule defined by site-directed mutagenesis.
    Proc Natl Acad Sci U S A. 1988 Dec;85(23):9273-7 PMID: 2461565
  17. Genetic analysis of monoclonal antibody and HIV binding sites on the human lymphocyte antigen CD4.
    Cell. 1988 Jul 1;54(1):65-72 PMID: 2454749
  18. The three-dimensional structure of foot-and-mouth disease virus at 2.9 A resolution.
    Nature. 1989 Feb 23;337(6209):709-16 PMID: 2537470
  19. cDNA cloning reveals that the major group rhinovirus receptor on HeLa cells is intercellular adhesion molecule 1.
    Proc Natl Acad Sci U S A. 1989 Jul;86(13):4907-11 PMID: 2544880
  20. A cell adhesion molecule, ICAM-1, is the major surface receptor for rhinoviruses.
    Cell. 1989 Mar 10;56(5):849-53 PMID: 2538244
  21. The major human rhinovirus receptor is ICAM-1.
    Cell. 1989 Mar 10;56(5):839-47 PMID: 2538243
  22. Conformational change in the floor of the human rhinovirus canyon blocks adsorption to HeLa cell receptors.
    J Virol. 1989 May;63(5):2002-7 PMID: 2539499
  23. Virus entry into animal cells.
    Adv Virus Res. 1989;36:107-51 PMID: 2500008
  24. Icosahedral RNA virus structure.
    Annu Rev Biochem. 1989;58:533-73 PMID: 2673017
  25. The canyon hypothesis. Hiding the host cell receptor attachment site on a viral surface from immune surveillance.
    J Biol Chem. 1989 Sep 5;264(25):14587-90 PMID: 2670920
  26. Cell surface receptors for picornaviruses.
    Bioessays. 1986 Dec;5(6):270-4 PMID: 3551940
  27. Translational efficiency of polycistronic mRNAs and their utilization to express heterologous genes in mammalian cells.
    EMBO J. 1987 Jan;6(1):187-93 PMID: 3582359
  28. Cytoplasmic expression system based on constitutive synthesis of bacteriophage T7 RNA polymerase in mammalian cells.
    Proc Natl Acad Sci U S A. 1990 Sep;87(17):6743-7 PMID: 2204064
  29. Modeling of the human intercellular adhesion molecule-1, the human rhinovirus major group receptor.
    Proteins. 1990;7(3):227-33 PMID: 1972986
  30. The arrangement of the immunoglobulin-like domains of ICAM-1 and the binding sites for LFA-1 and rhinovirus.
    Cell. 1990 Apr 20;61(2):243-54 PMID: 1970514
  31. Neutralization of poliovirus by cell receptors expressed in insect cells.
    J Virol. 1990 Oct;64(10):4697-702 PMID: 2168959
  32. Kinetics of poliovirus uncoating in HeLa cells in a nonacidic environment.
    J Virol. 1990 Aug;64(8):3590-7 PMID: 2164587
  33. Priming for and induction of anti-poliovirus neutralizing antibodies by synthetic peptides.
    Nature. 1983 Aug 25-31;304(5928):699-703 PMID: 6310403
  34. Polyomavirus origin for DNA replication comprises multiple genetic elements.
    J Virol. 1983 Sep;47(3):586-99 PMID: 6312083
  35. Transgenic mice susceptible to poliovirus.
    Proc Natl Acad Sci U S A. 1991 Feb 1;88(3):951-5 PMID: 1846972
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1991-05-01
Pages
3598-602
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC51499
Subset
IM
Grants
NIAID NIH HHS · AI-15122 · United States
NCI NIH HHS · CA-28146 · United States
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