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Characterization of SARS-CoV-2 N protein reveals multiple functional consequences of the C-terminal domain

Chao Wu, Abraham J. Qavi, Asmaa Hachim, Niloufar Kavian, Aidan R. Cole, AustinB. Moyle, Nicole D. Wagner, Joyce Sweeney-Gibbons, Henry W. Rohrs, Michael L.Gross, J. S. Malik Peiris, Christopher F. Basler, Christopher W. Farnsworth, Sophie A.Valkenburg, Gaya K. Amarasinghe, Daisy W. Leung
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Resumen

Nucleocapsid (N) encoded by SARS-CoV-2 plays key roles in the replication cycle and is a critical serological marker. Here we characterize essential biochemical properties of N and describe the utility of these insights in serological studies. We define N domains important for oligomerization and RNA binding and show that N oligomerization provides a high affinity RNA binding platform. We also map the RNA binding interface, showing protection in the N-terminal domain and linker region. In addition, phosphorylation causes reduction of RNA binding and redistribution of N from liquid droplets to loose-coils, showing how N/RNA accessibility and assembly may be regulated by phosphorylation. Finally, we find that the C-terminal domain of N is the most immunogenic, based upon antibody binding to patient samples. Together, we provide a biochemical description of SARS-CoV-2 N and highlight the value of using N domains as highly specific and sensitive diagnostic markers.

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Palabras clave SARS-CoV-2, COVID-19, phase separation, nucleoprotein, serology
Tipo de documento
Publicado en el sitio 2021-06-12 12:26:00

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