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Structural Characterization of Human Coronavirus NL63 N Protein

Identifieur interne : 000E58 ( Main/Exploration ); précédent : 000E57; suivant : 000E59

Structural Characterization of Human Coronavirus NL63 N Protein

Auteurs : Bozena Szelazek [Pologne] ; Wojciech Kabala [Pologne] ; Krzysztof Kus [Portugal] ; Michal Zdzalik [Pologne] ; Aleksandra Twarda-Clapa [Pologne] ; Przemyslaw Golik [Pologne] ; Michal Burmistrz [Pologne] ; Dominik Florek [Pologne] ; Benedykt Wladyka [Pologne] ; Krzysztof Pyrc [Pologne] ; Grzegorz Dubin [Pologne]

Source :

RBID : PMC:5432860

Abstract

ABSTRACT

Coronaviruses are responsible for upper and lower respiratory tract infections in humans. It is estimated that 1 to 10% of the population suffers annually from cold-like symptoms related to infection with human coronavirus NL63 (HCoV-NL63), an alphacoronavirus. The nucleocapsid (N) protein, the major structural component of the capsid, facilitates RNA packing, links the capsid to the envelope, and is also involved in multiple other processes, including viral replication and evasion of the immune system. Although the role of N protein in viral replication is relatively well described, no structural data are currently available regarding the N proteins of alphacoronaviruses. Moreover, our understanding of the mechanisms of RNA binding and nucleocapsid formation remains incomplete. In this study, we solved the crystal structures of the N- and C-terminal domains (NTD, residues 10 to 140, and CTD, residues 221 to 340, respectively) of the N protein of HCoV-NL63, both at a 1.5-Å resolution. Based on our structure of NTD solved here, we proposed and experimentally evaluated a model of RNA binding. The structure of the CTD reveals the mode of N protein dimerization. Overall, this study expands our understanding of the initial steps of N protein-nucleic acid interaction and may facilitate future efforts to control the associated infections.

IMPORTANCE Coronaviruses are responsible for the common cold and other respiratory tract infections in humans. According to multiple studies, 1 to 10% of the population is infected each year with HCoV-NL63. Viruses are relatively simple organisms composed of a few proteins and the nucleic acids that carry the information determining their composition. The nucleocapsid (N) protein studied in this work protects the nucleic acid from the environmental factors during virus transmission. This study investigated the structural arrangement of N protein, explaining the first steps of its interaction with nucleic acid at the initial stages of virus structure assembly. The results expand our understanding of coronavirus physiology and may facilitate future efforts to control the associated infections.


Url:
DOI: 10.1128/JVI.02503-16
PubMed: 28331093
PubMed Central: 5432860


Affiliations:


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<title>ABSTRACT</title>
<p>Coronaviruses are responsible for upper and lower respiratory tract infections in humans. It is estimated that 1 to 10% of the population suffers annually from cold-like symptoms related to infection with human coronavirus NL63 (HCoV-NL63), an alphacoronavirus. The nucleocapsid (N) protein, the major structural component of the capsid, facilitates RNA packing, links the capsid to the envelope, and is also involved in multiple other processes, including viral replication and evasion of the immune system. Although the role of N protein in viral replication is relatively well described, no structural data are currently available regarding the N proteins of alphacoronaviruses. Moreover, our understanding of the mechanisms of RNA binding and nucleocapsid formation remains incomplete. In this study, we solved the crystal structures of the N- and C-terminal domains (NTD, residues 10 to 140, and CTD, residues 221 to 340, respectively) of the N protein of HCoV-NL63, both at a 1.5-Å resolution. Based on our structure of NTD solved here, we proposed and experimentally evaluated a model of RNA binding. The structure of the CTD reveals the mode of N protein dimerization. Overall, this study expands our understanding of the initial steps of N protein-nucleic acid interaction and may facilitate future efforts to control the associated infections.</p>
<p>
<bold>IMPORTANCE</bold>
Coronaviruses are responsible for the common cold and other respiratory tract infections in humans. According to multiple studies, 1 to 10% of the population is infected each year with HCoV-NL63. Viruses are relatively simple organisms composed of a few proteins and the nucleic acids that carry the information determining their composition. The nucleocapsid (N) protein studied in this work protects the nucleic acid from the environmental factors during virus transmission. This study investigated the structural arrangement of N protein, explaining the first steps of its interaction with nucleic acid at the initial stages of virus structure assembly. The results expand our understanding of coronavirus physiology and may facilitate future efforts to control the associated infections.</p>
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<name sortKey="Burmistrz, Michal" sort="Burmistrz, Michal" uniqKey="Burmistrz M" first="Michal" last="Burmistrz">Michal Burmistrz</name>
<name sortKey="Dubin, Grzegorz" sort="Dubin, Grzegorz" uniqKey="Dubin G" first="Grzegorz" last="Dubin">Grzegorz Dubin</name>
<name sortKey="Dubin, Grzegorz" sort="Dubin, Grzegorz" uniqKey="Dubin G" first="Grzegorz" last="Dubin">Grzegorz Dubin</name>
<name sortKey="Florek, Dominik" sort="Florek, Dominik" uniqKey="Florek D" first="Dominik" last="Florek">Dominik Florek</name>
<name sortKey="Golik, Przemyslaw" sort="Golik, Przemyslaw" uniqKey="Golik P" first="Przemyslaw" last="Golik">Przemyslaw Golik</name>
<name sortKey="Golik, Przemyslaw" sort="Golik, Przemyslaw" uniqKey="Golik P" first="Przemyslaw" last="Golik">Przemyslaw Golik</name>
<name sortKey="Kabala, Wojciech" sort="Kabala, Wojciech" uniqKey="Kabala W" first="Wojciech" last="Kabala">Wojciech Kabala</name>
<name sortKey="Pyrc, Krzysztof" sort="Pyrc, Krzysztof" uniqKey="Pyrc K" first="Krzysztof" last="Pyrc">Krzysztof Pyrc</name>
<name sortKey="Pyrc, Krzysztof" sort="Pyrc, Krzysztof" uniqKey="Pyrc K" first="Krzysztof" last="Pyrc">Krzysztof Pyrc</name>
<name sortKey="Szelazek, Bozena" sort="Szelazek, Bozena" uniqKey="Szelazek B" first="Bozena" last="Szelazek">Bozena Szelazek</name>
<name sortKey="Twarda Clapa, Aleksandra" sort="Twarda Clapa, Aleksandra" uniqKey="Twarda Clapa A" first="Aleksandra" last="Twarda-Clapa">Aleksandra Twarda-Clapa</name>
<name sortKey="Twarda Clapa, Aleksandra" sort="Twarda Clapa, Aleksandra" uniqKey="Twarda Clapa A" first="Aleksandra" last="Twarda-Clapa">Aleksandra Twarda-Clapa</name>
<name sortKey="Wladyka, Benedykt" sort="Wladyka, Benedykt" uniqKey="Wladyka B" first="Benedykt" last="Wladyka">Benedykt Wladyka</name>
<name sortKey="Wladyka, Benedykt" sort="Wladyka, Benedykt" uniqKey="Wladyka B" first="Benedykt" last="Wladyka">Benedykt Wladyka</name>
<name sortKey="Zdzalik, Michal" sort="Zdzalik, Michal" uniqKey="Zdzalik M" first="Michal" last="Zdzalik">Michal Zdzalik</name>
</country>
<country name="Portugal">
<noRegion>
<name sortKey="Kus, Krzysztof" sort="Kus, Krzysztof" uniqKey="Kus K" first="Krzysztof" last="Kus">Krzysztof Kus</name>
</noRegion>
</country>
</tree>
</affiliations>
</record>

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