N‐glycosylation of the SARS‐CoV‐2 spike protein at Asn331 and Asn343 is involved in spike‐ACE2 binding, virus entry, and regulation of IL‐6

Author:

Das Tuhin1ORCID,Luo Shuhong12ORCID,Tang Hao12,Fang Jianmin12,Mao Yinging1ORCID,Yen Haw‐Han1,Dash Sabyasachi3ORCID,Shajahan Asif4ORCID,Pepi Lauren4ORCID,Huang Steven1,Jones Valerie S.1ORCID,Xie Shehuo2,Huang Gordon F.1,Lu Jinqiao1,Anderson Blake1ORCID,Zhang Benyue1ORCID,Azadi Parastoo5ORCID,Huang Ruo‐Pan1267ORCID

Affiliation:

1. RayBiotech Life Inc. Peachtree Corners Georgia USA

2. RayBiotech Guangzhou Co. Ltd. Guangzhou Guangzhou China

3. Department of Pathology Center for Vascular Biology, Weill Cornell Medicine New York New York USA

4. Vaccine Research Center Gaithersburg Maryland USA

5. Complex Carbohydrate Research Center University of Georgia Athens Georgia USA

6. South China Biochip Research Center Guangzhou China

7. Affiliated Cancer Hospital & Institute of Guangzhou Medical University Guangzhou Medical University Guangzhou China

Abstract

AbstractThe coronavirus disease 2019 (COVID‐19) pandemic is an ongoing global public health crisis. The causative agent, the SARS‐CoV‐2 virus, enters host cells via molecular interactions between the viral spike protein and the host cell ACE2 surface protein. The SARS‐CoV‐2 spike protein is extensively decorated with up to 66 N‐linked glycans. Glycosylation of viral proteins is known to function in immune evasion strategies but may also function in the molecular events of viral entry into host cells. Here, we show that N‐glycosylation at Asn331 and Asn343 of SARS‐CoV‐2 spike protein is required for it to bind to ACE2 and for the entry of pseudovirus harboring the SARS‐CoV‐2 spike protein into cells. Interestingly, high‐content glycan binding screening data have shown that N‐glycosylation of Asn331 and Asn343 of the RBD is important for binding to the specific glycan molecule G4GN (Galβ−1,4 GlcNAc), which is critical for spike‐RBD‐ACE2 binding. Furthermore, IL‐6 was identified through antibody array analysis of conditioned media of the corresponding pseudovirus assay. Mutation of N‐glycosylation of Asn331 and Asn343 sites of the spike receptor‐binding domain (RBD) significantly reduced the transcriptional upregulation of pro‐inflammatory signaling molecule IL‐6. In addition, IL‐6 levels correlated with spike protein levels in COVID‐19 patients' serum. These findings establish the importance of RBD glycosylation in SARS‐CoV‐2 pathogenesis, which can be exploited for the development of novel therapeutics for COVID‐19.

Publisher

Wiley

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