Studying the dynamics of coronavirus replicative structures

Publication date

2015-02-26

Authors

Hagemeijer, Marne C.ISNI 000000039065160X
De Haan, Cornelis A M

Editors

Maier, Helena Jane
Bickerton, Erica
Britton, Paul

Advisors

Supervisors

Document Type

Part of book

Collections

Open Access logo

License

taverne

Abstract

Coronaviruses (CoVs) generate specialized membrane compartments, which consist of double membrane vesicles connected to convoluted membranes, the so-called replicative structures, where viral RNA synthesis takes place. These sites harbor the CoV replication-transcription complexes (RTCs): multi-protein complexes consisting of 16 nonstructural proteins (nsps), the CoV nucleocapsid protein (N) and presumably host proteins. To successfully establish functional membrane-bound RTCs all of the viral and host constituents need to be correctly spatiotemporally organized during viral infection. Few studies, however, have investigated the dynamic processes involved in the formation and functioning of the (subunits of) CoV RTCs and the replicative structures in living cells. In this chapter we describe several protocols to perform time-lapse imaging of CoV-infected cells and to study the kinetics of (subunits of) the CoV replicative structures. The approaches described are not limited to CoV-infected cells; they can also be applied to other virus-infected or non-infected cells.

Keywords

Coronavirus, Dynamics, Fluorescence loss in photobleaching, Fluorescence recovery after photobleaching, Live-cell imaging, Nonstructural proteins, Replication-transcription complex, Taverne, General Immunology and Microbiology, General Medicine, Journal Article

Citation

Hagemeijer, M C & De Haan, C A M 2015, Studying the dynamics of coronavirus replicative structures. in H J Maier, E Bickerton & P Britton (eds), Coronaviruses: Methods and Protocols. vol. V, Methods in Molecular Biology, vol. 1282, Springer New York, pp. 261-269. https://doi.org/10.1007/978-1-4939-2438-7_22