Dissecting virus entry: Replication-independent analysis of virus binding, internalization, and penetration using minimal complementation of β-galactosidase

Publication date

2014

Authors

Burkard, C.ISNI 0000000390101042
Bloyet, Louis Marie
Wicht, O.ISNI 0000000419476260
van Kuppeveld, Frank J MISNI 0000000369420196
Rottier, P.J.M.ISNI 0000000029654607
de Haan, Cornelis A MORCID 0000-0002-4459-9874ISNI 0000000395765470
Bosch, Berend-JanISNI 0000000387346575

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Document Type

Article
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Abstract

Studies of viral entry into host cells often rely on the detection of post-entry parameters, such as viral replication or the expression of a reporter gene, rather than on measuring entry per se. The lack of assays to easily detect the different steps of entry severely hampers the analysis of this key process in virus infection. Here we describe novel, highly adaptable viral entry assays making use of minimal complementation of the E. coli β-galactosidase in mammalian cells. Enzyme activity is reconstituted when a small intravirion peptide (α-peptide) is complementing the inactive mutant form ΔM15 of β-galactosidase. The method allows to dissect and to independently detect binding, internalization, and fusion of viruses during host cell entry. Here we use it to confirm and extend current knowledge on the entry process of two enveloped viruses: vesicular stomatitis virus (VSV) and murine hepatitis coronavirus (MHV).

Keywords

SDG 3 - Good Health and Well-being

Citation

Burkard, C, Bloyet, L M, Wicht, O, Van Kuppeveld, F J, Rottier, P J M, De Haan, C A M & Bosch, B J 2014, 'Dissecting virus entry: Replication-independent analysis of virus binding, internalization, and penetration using minimal complementation of β-galactosidase', PLoS One, vol. 9, no. 7, e101762. https://doi.org/10.1371/journal.pone.0101762