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J Virol. 1997 Mar; 71(3): 2449–2456.
PMCID: PMC191355
PMID: 9032382

Identification of the alpha6 integrin as a candidate receptor for papillomaviruses.

Abstract

Papillomaviruses (PVs) bind in a specific and saturable fashion to a range of epithelial and other cell lines. Treatment of cells with trypsin markedly reduces their ability to bind virus particles, suggesting that binding is mediated via a cell membrane protein. We have investigated the interaction of human PV type 6b L1 virus-like particles (VLPs) with two epithelial cell lines, CV-1 and HaCaT, which bind VLPs, and a B-cell line (DG75) previously shown not to bind VLPs. Immunoprecipitation of a mixture of PV VLPs with [35S]methionine-labeled cell extracts and with biotin-labeled cell surface proteins identified four proteins from CV-1 and HaCaT cells of 220, 120, 87, and 35 kDa that reacted with VLPs and were not present in DG75 cells. The alpha6beta4 integrin complex has subunits corresponding to the VLP precipitated proteins, and the tissue distribution of this complex suggested that it was a candidate human PV receptor. Monoclonal antibodies (MAbs) to the alpha6 or beta4 integrin subunits precipitated VLPs from a mixture of CV-1 cell proteins and VLPs, whereas MAbs to other integrin subunits did not. An alpha6 integrin-specific MAb (GoH3) inhibited VLP binding to CV-1 and HaCaT cells, whereas an anti-beta4 integrin MAb and a range of integrin-specific and other MAbs did not. Furthermore, human laminin, the natural ligand for the alpha6beta4 integrin, was able to block VLP binding. By use of sections of monkey esophagus, the distribution of alpha6 integrin expression in the basal epithelium was shown to coincide with the distribution of bound VLPs. Taken together, these data suggest that VLPs bind specifically to the alpha6 integrin subunit and that integrin complexes containing alpha6 integrin complexed with either beta1 or beta4 integrins may act as a receptor for PV binding and entry into epithelial cells.

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Selected References

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  • Bergelson JM, Shepley MP, Chan BM, Hemler ME, Finberg RW. Identification of the integrin VLA-2 as a receptor for echovirus 1. Science. 1992 Mar 27;255(5052):1718–1720. [PubMed] [Google Scholar]
  • Berinstein A, Roivainen M, Hovi T, Mason PW, Baxt B. Antibodies to the vitronectin receptor (integrin alpha V beta 3) inhibit binding and infection of foot-and-mouth disease virus to cultured cells. J Virol. 1995 Apr;69(4):2664–2666. [PMC free article] [PubMed] [Google Scholar]
  • Bosch FX, Manos MM, Muñoz N, Sherman M, Jansen AM, Peto J, Schiffman MH, Moreno V, Kurman R, Shah KV. Prevalence of human papillomavirus in cervical cancer: a worldwide perspective. International biological study on cervical cancer (IBSCC) Study Group. J Natl Cancer Inst. 1995 Jun 7;87(11):796–802. [PubMed] [Google Scholar]
  • Breau WC, Atwood WJ, Norkin LC. Class I major histocompatibility proteins are an essential component of the simian virus 40 receptor. J Virol. 1992 Apr;66(4):2037–2045. [PMC free article] [PubMed] [Google Scholar]
  • Bretscher MS. Cells can use their transferrin receptors for locomotion. EMBO J. 1992 Feb;11(2):383–389. [PMC free article] [PubMed] [Google Scholar]
  • Carter WG, Kaur P, Gil SG, Gahr PJ, Wayner EA. Distinct functions for integrins alpha 3 beta 1 in focal adhesions and alpha 6 beta 4/bullous pemphigoid antigen in a new stable anchoring contact (SAC) of keratinocytes: relation to hemidesmosomes. J Cell Biol. 1990 Dec;111(6 Pt 2):3141–3154. [PMC free article] [PubMed] [Google Scholar]
  • Dalgleish AG, Beverley PC, Clapham PR, Crawford DH, Greaves MF, Weiss RA. The CD4 (T4) antigen is an essential component of the receptor for the AIDS retrovirus. Nature. 1984 Dec 20;312(5996):763–767. [PubMed] [Google Scholar]
  • De Luca M, Tamura RN, Kajiji S, Bondanza S, Rossino P, Cancedda R, Marchisio PC, Quaranta V. Polarized integrin mediates human keratinocyte adhesion to basal lamina. Proc Natl Acad Sci U S A. 1990 Sep;87(17):6888–6892. [PMC free article] [PubMed] [Google Scholar]
  • Doorbar J, Gallimore PH. Identification of proteins encoded by the L1 and L2 open reading frames of human papillomavirus 1a. J Virol. 1987 Sep;61(9):2793–2799. [PMC free article] [PubMed] [Google Scholar]
  • Giancotti FG, Stepp MA, Suzuki S, Engvall E, Ruoslahti E. Proteolytic processing of endogenous and recombinant beta 4 integrin subunit. J Cell Biol. 1992 Aug;118(4):951–959. [PMC free article] [PubMed] [Google Scholar]
  • Hall DE, Reichardt LF, Crowley E, Holley B, Moezzi H, Sonnenberg A, Damsky CH. The alpha 1/beta 1 and alpha 6/beta 1 integrin heterodimers mediate cell attachment to distinct sites on laminin. J Cell Biol. 1990 Jun;110(6):2175–2184. [PMC free article] [PubMed] [Google Scholar]
  • Haywood AM. Virus receptors: binding, adhesion strengthening, and changes in viral structure. J Virol. 1994 Jan;68(1):1–5. [PMC free article] [PubMed] [Google Scholar]
  • Hynes RO. Integrins: versatility, modulation, and signaling in cell adhesion. Cell. 1992 Apr 3;69(1):11–25. [PubMed] [Google Scholar]
  • Kajiji S, Tamura RN, Quaranta V. A novel integrin (alpha E beta 4) from human epithelial cells suggests a fourth family of integrin adhesion receptors. EMBO J. 1989 Mar;8(3):673–680. [PMC free article] [PubMed] [Google Scholar]
  • Kirnbauer R, Booy F, Cheng N, Lowy DR, Schiller JT. Papillomavirus L1 major capsid protein self-assembles into virus-like particles that are highly immunogenic. Proc Natl Acad Sci U S A. 1992 Dec 15;89(24):12180–12184. [PMC free article] [PubMed] [Google Scholar]
  • Klein CE, Steinmayer T, Mattes JM, Kaufmann R, Weber L. Integrins of normal human epidermis: differential expression, synthesis and molecular structure. Br J Dermatol. 1990 Aug;123(2):171–178. [PubMed] [Google Scholar]
  • Knox JD, Cress AE, Clark V, Manriquez L, Affinito KS, Dalkin BL, Nagle RB. Differential expression of extracellular matrix molecules and the alpha 6-integrins in the normal and neoplastic prostate. Am J Pathol. 1994 Jul;145(1):167–174. [PMC free article] [PubMed] [Google Scholar]
  • Kurpakus MA, Quaranta V, Jones JC. Surface relocation of alpha 6 beta 4 integrins and assembly of hemidesmosomes in an in vitro model of wound healing. J Cell Biol. 1991 Dec;115(6):1737–1750. [PMC free article] [PubMed] [Google Scholar]
  • Larsen PM, Storgaard L, Fey SJ. Proteins present in bovine papillomavirus particles. J Virol. 1987 Nov;61(11):3596–3601. [PMC free article] [PubMed] [Google Scholar]
  • Mainiero F, Pepe A, Wary KK, Spinardi L, Mohammadi M, Schlessinger J, Giancotti FG. Signal transduction by the alpha 6 beta 4 integrin: distinct beta 4 subunit sites mediate recruitment of Shc/Grb2 and association with the cytoskeleton of hemidesmosomes. EMBO J. 1995 Sep 15;14(18):4470–4481. [PMC free article] [PubMed] [Google Scholar]
  • Müller M, Gissmann L, Cristiano RJ, Sun XY, Frazer IH, Jenson AB, Alonso A, Zentgraf H, Zhou J. Papillomavirus capsid binding and uptake by cells from different tissues and species. J Virol. 1995 Feb;69(2):948–954. [PMC free article] [PubMed] [Google Scholar]
  • Niessen CM, van der Raaij-Helmer MH, Hulsman EH, van der Neut R, Jonkman MF, Sonnenberg A. Deficiency of the integrin beta 4 subunit in junctional epidermolysis bullosa with pyloric atresia: consequences for hemidesmosome formation and adhesion properties. J Cell Sci. 1996 Jul;109(Pt 7):1695–1706. [PubMed] [Google Scholar]
  • Petty HR, Todd RF., 3rd Integrins as promiscuous signal transduction devices. Immunol Today. 1996 May;17(5):209–212. [PubMed] [Google Scholar]
  • Price P. Are MHC proteins cellular receptors for CMV? Immunol Today. 1994 Jun;15(6):295–296. [PubMed] [Google Scholar]
  • Qi YM, Peng SW, Hengst K, Evander M, Park DS, Zhou J, Frazer IH. Epithelial cells display separate receptors for papillomavirus VLPs and for soluble L1 capsid protein. Virology. 1996 Feb 1;216(1):35–45. [PubMed] [Google Scholar]
  • Roden RB, Kirnbauer R, Jenson AB, Lowy DR, Schiller JT. Interaction of papillomaviruses with the cell surface. J Virol. 1994 Nov;68(11):7260–7266. [PMC free article] [PubMed] [Google Scholar]
  • Roivainen M, Piirainen L, Hovi T, Virtanen I, Riikonen T, Heino J, Hyypiä T. Entry of coxsackievirus A9 into host cells: specific interactions with alpha v beta 3 integrin, the vitronectin receptor. Virology. 1994 Sep;203(2):357–365. [PubMed] [Google Scholar]
  • Rose RC, Bonnez W, Reichman RC, Garcea RL. Expression of human papillomavirus type 11 L1 protein in insect cells: in vivo and in vitro assembly of viruslike particles. J Virol. 1993 Apr;67(4):1936–1944. [PMC free article] [PubMed] [Google Scholar]
  • Sonnenberg A, Calafat J, Janssen H, Daams H, van der Raaij-Helmer LM, Falcioni R, Kennel SJ, Aplin JD, Baker J, Loizidou M, et al. Integrin alpha 6/beta 4 complex is located in hemidesmosomes, suggesting a major role in epidermal cell-basement membrane adhesion. J Cell Biol. 1991 May;113(4):907–917. [PMC free article] [PubMed] [Google Scholar]
  • Sonnenberg A, Linders CJ, Daams JH, Kennel SJ. The alpha 6 beta 1 (VLA-6) and alpha 6 beta 4 protein complexes: tissue distribution and biochemical properties. J Cell Sci. 1990 Jun;96(Pt 2):207–217. [PubMed] [Google Scholar]
  • Spinardi L, Einheber S, Cullen T, Milner TA, Giancotti FG. A recombinant tail-less integrin beta 4 subunit disrupts hemidesmosomes, but does not suppress alpha 6 beta 4-mediated cell adhesion to laminins. J Cell Biol. 1995 Apr;129(2):473–487. [PMC free article] [PubMed] [Google Scholar]
  • Tennenbaum T, Li L, Belanger AJ, De Luca LM, Yuspa SH. Selective changes in laminin adhesion and alpha 6 beta 4 integrin regulation are associated with the initial steps in keratinocyte maturation. Cell Growth Differ. 1996 May;7(5):615–628. [PubMed] [Google Scholar]
  • Vidal F, Aberdam D, Miquel C, Christiano AM, Pulkkinen L, Uitto J, Ortonne JP, Meneguzzi G. Integrin beta 4 mutations associated with junctional epidermolysis bullosa with pyloric atresia. Nat Genet. 1995 Jun;10(2):229–234. [PubMed] [Google Scholar]
  • Volpers C, Schirmacher P, Streeck RE, Sapp M. Assembly of the major and the minor capsid protein of human papillomavirus type 33 into virus-like particles and tubular structures in insect cells. Virology. 1994 May 1;200(2):504–512. [PubMed] [Google Scholar]
  • Volpers C, Unckell F, Schirmacher P, Streeck RE, Sapp M. Binding and internalization of human papillomavirus type 33 virus-like particles by eukaryotic cells. J Virol. 1995 Jun;69(6):3258–3264. [PMC free article] [PubMed] [Google Scholar]
  • Wickham TJ, Mathias P, Cheresh DA, Nemerow GR. Integrins alpha v beta 3 and alpha v beta 5 promote adenovirus internalization but not virus attachment. Cell. 1993 Apr 23;73(2):309–319. [PubMed] [Google Scholar]
  • Zhou J, Gissmann L, Zentgraf H, Müller H, Picken M, Müller M. Early phase in the infection of cultured cells with papillomavirus virions. Virology. 1995 Dec 1;214(1):167–176. [PubMed] [Google Scholar]
  • Zhou J, Sun XY, Louis K, Frazer IH. Interaction of human papillomavirus (HPV) type 16 capsid proteins with HPV DNA requires an intact L2 N-terminal sequence. J Virol. 1994 Feb;68(2):619–625. [PMC free article] [PubMed] [Google Scholar]
  • Zhou J, Sun XY, Stenzel DJ, Frazer IH. Expression of vaccinia recombinant HPV 16 L1 and L2 ORF proteins in epithelial cells is sufficient for assembly of HPV virion-like particles. Virology. 1991 Nov;185(1):251–257. [PubMed] [Google Scholar]
  • zur Hausen H. Human papillomaviruses and their possible role in squamous cell carcinomas. Curr Top Microbiol Immunol. 1977;78:1–30. [PubMed] [Google Scholar]

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