Isolation and characterization of a bat SARS-like coronavirus that uses the ACE2 receptor.

Xing-Yi Ge1 Jia-Lu Li Xing-Lou Yang Aleksei A Chmura Guangjian Zhu Jonathan H Epstein Jonna K Mazet Ben Hu Wei Zhang Cheng Peng Yu-Ji Zhang Chu-Ming Luo Bing Tan Ning Wang Yan Zhu Gary Crameri Shu-Yi Zhang Lin-Fa Wang Peter Daszak Zheng-Li Shi
Affiliations 1 institutions
  1. 1] Center for Emerging Infectious Diseases, State Key Laboratory of Virology, Wuhan Institute of Virology of the Chinese Academy of Sciences, Wuhan 430071, China [2].

Abstract

The 2002-3 pandemic caused by severe acute respiratory syndrome coronavirus (SARS-CoV) was one of the most significant public health events in recent history. An ongoing outbreak of Middle East respiratory syndrome coronavirus suggests that this group of viruses remains a key threat and that their distribution is wider than previously recognized. Although bats have been suggested to be the natural reservoirs of both viruses, attempts to isolate the progenitor virus of SARS-CoV from bats have been unsuccessful. Diverse SARS-like coronaviruses (SL-CoVs) have now been reported from bats in China, Europe and Africa, but none is considered a direct progenitor of SARS-CoV because of their phylogenetic disparity from this virus and the inability of their spike proteins to use the SARS-CoV cellular receptor molecule, the human angiotensin converting enzyme II (ACE2). Here we report whole-genome sequences of two novel bat coronaviruses from Chinese horseshoe bats (family: Rhinolophidae) in Yunnan, China: RsSHC014 and Rs3367. These viruses are far more closely related to SARS-CoV than any previously identified bat coronaviruses, particularly in the receptor binding domain of the spike protein. Most importantly, we report the first recorded isolation of a live SL-CoV (bat SL-CoV-WIV1) from bat faecal samples in Vero E6 cells, which has typical coronavirus morphology, 99.9% sequence identity to Rs3367 and uses ACE2 from humans, civets and Chinese horseshoe bats for cell entry. Preliminary in vitro testing indicates that WIV1 also has a broad species tropism. Our results provide the strongest evidence to date that Chinese horseshoe bats are natural reservoirs of SARS-CoV, and that intermediate hosts may not be necessary for direct human infection by some bat SL-CoVs. They also highlight the importance of pathogen-discovery programs targeting high-risk wildlife groups in emerging disease hotspots as a strategy for pandemic preparedness.

Supporting text Virus Host Location
Angiotensin-Converting Enzyme 2 177 Animals 1948 China 229 Chiroptera 371 Chlorocebus aethiops 70 Disease Reservoirs 149 Feces 113 Fluorescent Antibody Technique 2 Genome, Viral 317 Host Specificity 132 Humans 1440 Molecular Sequence Data 160 Pandemics 108 Peptidyl-Dipeptidase A 57 Real-Time Polymerase Chain Reaction 18 Receptors, Virus 204 Severe Acute Respiratory Syndrome 22 Severe acute respiratory syndrome-related coronavirus 78 Species Specificity 84 Spike Glycoprotein, Coronavirus 274 Vero Cells 55 Virion 8 Virus Internalization 100 Viverridae 12

Evidence records

5 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE11395
Key finding

A live SARS-like coronavirus (bat SL-CoV-WIV1) was isolated from bat faecal samples in Vero E6 cells.

Virus
Host
Location
Not specified
Supporting text

Most importantly, we report the first recorded isolation of a live SL-CoV (bat SL-CoV-WIV1) from bat faecal samples in Vero E6 cells, which has typical coronavirus morphology, 99.9% sequence identity to Rs3367 and uses ACE2 from humans, civets and Chinese horseshoe bats for cell entry.

Sample type
bat faecal samples
Evidence type
1 records
OVE11397
Key finding

Chinese horseshoe bats in Yunnan, China are identified as natural reservoirs of SARS-CoV based on isolation and genomic similarity of SARS-like coronaviruses.

Virus
Host
Location
Supporting text

Here we report whole-genome sequences of two novel bat coronaviruses from Chinese horseshoe bats (family: Rhinolophidae) in Yunnan, China: RsSHC014 and Rs3367. Our results provide the strongest evidence to date that Chinese horseshoe bats are natural reservoirs of SARS-CoV, and that intermediate hosts may not be necessary for direct human infection by some bat SL-CoVs.

Method
virus isolation | whole-genome sequencing | phylogenetic comparison
Sample type
faecal samples
Geographic raw
Yunnan, China
Country inferred
CHN
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE11399
Key finding

In vitro host-range experiments showed that the bat SL-CoV WIV1 can use ACE2 from humans, civets, and Chinese horseshoe bats for cell entry, indicating broad species tropism.

Virus
Host
Location
Not specified
Supporting text

Most importantly, we report the first recorded isolation of a live SL-CoV (bat SL-CoV-WIV1) from bat faecal samples in Vero E6 cells ... and uses ACE2 from humans, civets and Chinese horseshoe bats for cell entry. Preliminary in vitro testing indicates that WIV1 also has a broad species tropism.

Method
virus isolation in Vero E6 cells | in vitro receptor usage assay | ACE2-mediated cell entry testing
Sample type
faecal samples | cell cultures
Experimental system
in vitro cell-culture receptor-entry system using Vero E6 cells expressing ACE2 from multiple species
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE11396
Key finding

The bat SL-CoV-WIV1 coronavirus can use ACE2 from humans, civets, and Chinese horseshoe bats for cell entry.

Virus
Host
Location
Not specified
Supporting text

The isolated bat SL-CoV-WIV1 uses ACE2 from humans, civets and Chinese horseshoe bats for cell entry.

Method
virus isolation | cell entry assay | receptor binding experiment in Vero E6 cells
Receptors
ACE2
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE11398
Key finding

Phylogenetic analysis showed that bat coronaviruses RsSHC014 and Rs3367 from Chinese horseshoe bats in Yunnan, China are far more closely related to SARS-CoV than any previously identified bat coronaviruses, particularly in the receptor-binding domain of the spike protein.

Virus
Host
Location
Not specified
Supporting text

Here we report whole-genome sequences of two novel bat coronaviruses from Chinese horseshoe bats (family: Rhinolophidae) in Yunnan, China: RsSHC014 and Rs3367. These viruses are far more closely related to SARS-CoV than any previously identified bat coronaviruses, particularly in the receptor binding domain of the spike protein.

Genes or proteins
spike protein | receptor binding domain
Analysis methods
phylogenetic analysis