Paper
Document
Submit new version
Download
Flag content
3

A SARS-like cluster of circulating bat coronaviruses shows potential for human emergence

Authors
Vineet D Menachery,Boyd L Yount
Kari Debbink,Sudhakar Agnihothram,Lisa E Gralinski,Jessica A Plante,Rachel L Graham,Trevor Scobey,Xing-Yi Ge,Eric F Donaldson,Scott H Randell,Antonio Lanzavecchia,Wayne A Marasco,Zhengli-Li Shi,Ralph S Baric,Vineet Menachery,Boyd Yount,Lisa Gralinski,Jessica Plante,Rachel Graham,Xing‐Yi Ge,Eric Donaldson,Scott Randell,Wayne Marasco,Zheng‐Li Shi
+23 authors
,Ralph Baric
Published
Nov 9, 2015
Show more
Save
TipTip
Document
Submit new version
Download
Flag content
3
TipTip
Save
Document
Submit new version
Download
Flag content

Abstract

The emergence of severe acute respiratory syndrome coronavirus (SARS-CoV) and Middle East respiratory syndrome (MERS)-CoV underscores the threat of cross-species transmission events leading to outbreaks in humans. Here we examine the disease potential of a SARS-like virus, SHC014-CoV, which is currently circulating in Chinese horseshoe bat populations. Using the SARS-CoV reverse genetics system, we generated and characterized a chimeric virus expressing the spike of bat coronavirus SHC014 in a mouse-adapted SARS-CoV backbone. The results indicate that group 2b viruses encoding the SHC014 spike in a wild-type backbone can efficiently use multiple orthologs of the SARS receptor human angiotensin converting enzyme II (ACE2), replicate efficiently in primary human airway cells and achieve in vitro titers equivalent to epidemic strains of SARS-CoV. Additionally, in vivo experiments demonstrate replication of the chimeric virus in mouse lung with notable pathogenesis. Evaluation of available SARS-based immune-therapeutic and prophylactic modalities revealed poor efficacy; both monoclonal antibody and vaccine approaches failed to neutralize and protect from infection with CoVs using the novel spike protein. On the basis of these findings, we synthetically re-derived an infectious full-length SHC014 recombinant virus and demonstrate robust viral replication both in vitro and in vivo. Our work suggests a potential risk of SARS-CoV re-emergence from viruses currently circulating in bat populations.

Paper PDF

This paper's license is marked as closed access or non-commercial and cannot be viewed on ResearchHub. Visit the paper's external site.