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Updated: Apr 30, 2026

Production of Pseudotyped Particles to Study Highly Pathogenic Coronaviruses in a Biosafety Level 2 Setting
Published on: March 1, 2019
SARS-CoV envelope protein palmitoylation or nucleocapid association is not required for promoting virus-like particle
Ying-Tzu Tseng, Shiu-Mei Wang, Kuo-Jung Huang
1Department of Medical Research, Taipei Veterans General Hospital, 201, Sec, 2, Shih-Pai Road, Taipei 11217, Taiwan. chintien@ym.edu.tw.
Background:
Coronavirus membrane (M) proteins are capable of interacting with nucleocapsid (N) and envelope (E) proteins. Severe acute respiratory syndrome coronavirus (SARS-CoV) M co-expression with either N or E is sufficient for producing virus-like particles (VLPs), although at a lower level compared to M, N and E co-expression. Whether E can release from cells or E/N interaction exists so as to contribute to enhanced VLP production is unknown. It also remains to be determined whether E palmitoylation or disulfide bond formation plays a role in SARS-CoV virus assembly.
Results:
SARS-CoV N is released from cells through an association with E protein-containing vesicles. Further analysis suggests that domains involved in E/N interaction are largely located in both carboxyl-terminal regions. Changing all three E cysteine residues to alanines did not exert negative effects on E release, E association with N, or E enhancement of VLP production, suggesting that E palmitoylation modification or disulfide bond formation is not required for SARS-CoV virus assembly. We found that removal of the last E carboxyl-terminal residue markedly affected E release, N association, and VLP incorporation, but did not significantly compromise the contribution of E to efficient VLP production.
Conclusions:
The independence of the SARS-CoV E enhancement effect on VLP production from its viral packaging capacity suggests a distinct SARS-CoV E role in virus assembly.
Insights
Severe acute respiratory syndrome coronavirus (SARS-CoV) envelope (E) protein facilitates nucleocapsid (N) protein release via vesicles. E’s role in virus-like particle (VLP) production is independent of its viral packaging ability.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Coronavirus membrane (M) proteins interact with nucleocapsid (N) and envelope (E) proteins.
- Co-expression of SARS-CoV M with N or E yields virus-like particles (VLPs).
- The role of E protein release and E/N interaction in VLP production remains unclear.
Purpose of the Study:
- To investigate the mechanism of SARS-CoV N protein release.
- To determine the role of E protein in VLP production.
- To elucidate the function of E protein modifications in SARS-CoV assembly.
Main Methods:
- Co-expression of SARS-CoV proteins to generate VLPs.
- Analysis of E protein release and association with N protein.
- Site-directed mutagenesis of E protein cysteine residues and carboxyl-terminal deletions.
Main Results:
- SARS-CoV N protein is released via association with E protein-containing vesicles.
- E/N interaction domains are primarily in carboxyl-terminal regions.
- E palmitoylation or disulfide bond formation is not essential for SARS-CoV assembly.
- Removal of the terminal E residue impacts release and association but not VLP enhancement.
Conclusions:
- SARS-CoV E protein enhances VLP production independently of its viral packaging capacity.
- A distinct role for E protein in SARS-CoV virus assembly is proposed.
- E protein-mediated release of N protein is a key step in viral assembly.
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