A single C-terminal residue controls SARS-CoV-2 spike trafficking and virion assembly

Author:

Dey Debajit,Qing Enya,He Yanan,Chen Yihong,Jennings Benjamin,Cohn Whitaker,Singh Suruchi,Gakhar Lokesh,Schnicker Nicholas J.,Pierce Brian G.,Whitelegge Julian P.,Doray Balraj,Orban John P.,Gallagher Tom,Hasan S. Saif

Abstract

ABSTRACTThe spike (S) protein of SARS-CoV-2 is delivered to the virion assembly site in the ER-Golgi Intermediate Compartment (ERGIC) from both the ER and cis-Golgi in infected cells1-3. However, the relevance and modulatory mechanism of this bidirectional trafficking are unclear. Here, using structure-function analyses, we show that S incorporation into virions and viral fusogenicity are determined by coatomer-dependent S delivery from the cis-Golgi and restricted by S-coatomer dissociation. Although S mimicry of the host coatomer-binding dibasic motif ensures retrograde trafficking to the ERGIC, avoidance of the host-like C-terminal acidic residue is critical for S-coatomer dissociation and therefore incorporation into virions or export for cell-cell fusion. Because this C-terminal residue is the key determinant of SARS-CoV-2 assembly and fusogenicity, our work provides a framework for the export of S protein encoded in genetic vaccines for surface display and immune activation.

Publisher

Cold Spring Harbor Laboratory

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