Differential maturation and subcellular localization of severe acute respiratory syndrome coronavirus surface proteins S, M and E

Author:

Nal Béatrice1,Chan Cheman1,Kien Francois1,Siu Lewis1,Tse Jane1,Chu Kid1,Kam Jason1,Staropoli Isabelle2,Crescenzo-Chaigne Bernadette3,Escriou Nicolas3,van der Werf Sylvie3,Yuen Kwok-Yung4,Altmeyer Ralf1

Affiliation:

1. HKU-Pasteur Research Centre, 8 Sassoon Road, Hong Kong, China

2. Unité d'Immunologie Virale, Institut Pasteur, 25 rue du Dr Roux, Paris, France

3. Unité de Génétique Moléculaire des Virus Respiratoires, Institut Pasteur, 25 rue du Dr Roux, Paris, France

4. Department of Microbiology, The University of Hong Kong, Hong Kong, China

Abstract

Post-translational modifications and correct subcellular localization of viral structural proteins are prerequisites for assembly and budding of enveloped viruses. Coronaviruses, like the severe acute respiratory syndrome-associated virus (SARS-CoV), bud from the endoplasmic reticulum-Golgi intermediate compartment. In this study, the subcellular distribution and maturation of SARS-CoV surface proteins S, M and E were analysed by using C-terminally tagged proteins. As early as 30 min post-entry into the endoplasmic reticulum, high-mannosylated S assembles into trimers prior to acquisition of complexN-glycans in the Golgi. Like S, M acquires high-mannoseN-glycans that are subsequently modified into complexN-glycans in the Golgi. TheN-glycosylation profile and the absence ofO-glycosylation on M protein relate SARS-CoV to the previously described group 1 and 3 coronaviruses. Immunofluorescence analysis shows that S is detected in several compartments along the secretory pathway from the endoplasmic reticulum to the plasma membrane while M predominantly localizes in the Golgi, where it accumulates, and in trafficking vesicles. The E protein is not glycosylated. Pulse-chase labelling and confocal microscopy in the presence of protein translation inhibitor cycloheximide revealed that the E protein has a short half-life of 30 min. E protein is found in bright perinuclear patches colocalizing with endoplasmic reticulum markers. In conclusion, SARS-CoV surface proteins S, M and E show differential subcellular localizations when expressed alone suggesting that additional cellular or viral factors might be required for coordinated trafficking to the virus assembly site in the endoplasmic reticulum-Golgi intermediate compartment.

Publisher

Microbiology Society

Subject

Virology

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