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A Polarized Cell Model for Chikungunya Virus Infection: Entry and Egress of Virus Occurs at the Apical Domain of Polarized Cells

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Date 2014 Mar 4
PMID 24587455
Citations 7
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Abstract

Chikungunya virus (CHIKV) has resulted in several outbreaks in the past six decades. The clinical symptoms of Chikungunya infection include fever, skin rash, arthralgia, and an increasing incidence of encephalitis. The re-emergence of CHIKV with more severe pathogenesis highlights its potential threat on our human health. In this study, polarized HBMEC, polarized Vero C1008 and non-polarized Vero cells grown on cell culture inserts were infected with CHIKV apically or basolaterally. Plaque assays, viral binding assays and immunofluorescence assays demonstrated apical entry and release of CHIKV in polarized HBMEC and Vero C1008. Drug treatment studies were performed to elucidate both host cell and viral factors involved in the sorting and release of CHIKV at the apical domain of polarized cells. Disruption of host cell myosin II, microtubule and microfilament networks did not disrupt the polarized release of CHIKV. However, treatment with tunicamycin resulted in a bi-directional release of CHIKV, suggesting that N-glycans of CHIKV envelope glycoproteins could serve as apical sorting signals.

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References
1.
Fuller S, von Bonsdorff C, Simons K . Cell surface influenza haemagglutinin can mediate infection by other animal viruses. EMBO J. 1985; 4(10):2475-85. PMC: 554532. View

2.
Queyriaux B, Armengaud A, Jeannin C, Couturier E, Peloux-Petiot F . Chikungunya in Europe. Lancet. 2008; 371(9614):723-4. DOI: 10.1016/S0140-6736(08)60337-2. View

3.
Borgherini G, Poubeau P, Jossaume A, Gouix A, Cotte L, Michault A . Persistent arthralgia associated with chikungunya virus: a study of 88 adult patients on reunion island. Clin Infect Dis. 2008; 47(4):469-75. DOI: 10.1086/590003. View

4.
Voss J, Vaney M, Duquerroy S, Vonrhein C, Girard-Blanc C, Crublet E . Glycoprotein organization of Chikungunya virus particles revealed by X-ray crystallography. Nature. 2010; 468(7324):709-12. DOI: 10.1038/nature09555. View

5.
Ashkenazi A, Melnick J . Induced latent infection of monkeys with vacuolating SV-40 Papova virus. Virus in kidneys and urine. Proc Soc Exp Biol Med. 1962; 111:367-72. DOI: 10.3181/00379727-111-27794. View