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Live Imaging and Quantification of Viral Infection in K18 hACE2 Transgenic Mice Using Reporter-Expressing Recombinant SARS-CoV-2
Published on: November 5, 2021
ACE2 utilization of HKU25 clade MERS-related coronaviruses with broad geographic distribution
Chen Liu1, Young-Jun Park2,3, Cheng-Bao Ma1
1State Key Laboratory of Virology and Biosafety, College of Life Sciences, TaiKang Center for Life and Medical Sciences, Wuhan University; Wuhan, Hubei, 430072, China.
Abstract:
Dipeptidyl peptidase-4 (DPP4) is a well-established receptor for several MERS-related coronaviruses (MERSr-CoVs) isolated from humans, camels, pangolins, and bats 1-6. However, the receptor usage of many genetically diverse bat MERSr-CoVs with broad geographical distributions remains poorly understood. Recent studies have identified angiotensin-converting enzyme 2 (ACE2) as an entry receptor for multiple merbecovirus clades. Here, using viral antigen and pseudovirus-based functional assays, we demonstrate that several bat merbecoviruses from the HKU25 clade previously thought to utilize DPP4 7, employ ACE2 as their functional receptor. Cryo-electron microscopy analysis revealed that HsItaly2011 and VsCoV-a7 recognize ACE2 with a binding mode sharing similarity with that of HKU5 but involving remodeled interfaces and distinct ortholog selectivity, suggesting a common evolutionary origin of ACE2 utilization for these two clades of viruses. EjCoV-3, a strain closely related to the DPP4-using MERSr-CoV BtCoV-422, exhibited relatively broad ACE2 ortholog tropism and could utilize human ACE2 albeit suboptimally. Despite differences in entry mechanisms and spike proteolytic activation compared to MERS-CoV, these viruses remain sensitive to several broadly neutralizing antibodies and entry inhibitors. These findings redefine our understanding of the evolution of receptor usage among MERSr-CoVs and highlight the versatility of ACE2 as a functional receptor for diverse coronaviruses.
Insights
Dipeptidyl peptidase-4 (DPP4) is a known receptor for MERS-related coronaviruses (MERSr-CoVs). This study reveals that some bat MERSr-CoVs utilize angiotensin-converting enzyme 2 (ACE2) as their functional receptor, expanding our understanding of viral entry mechanisms.
Area of Science:
- Virology
- Molecular Biology
- Structural Biology
Background:
- Dipeptidyl peptidase-4 (DPP4) is the established receptor for MERS-related coronaviruses (MERSr-CoVs) from various hosts.
- The receptor usage of diverse bat MERSr-CoVs remains incompletely understood.
- Angiotensin-converting enzyme 2 (ACE2) has recently emerged as an entry receptor for several merbecovirus clades.
Purpose of the Study:
- To investigate the receptor usage of genetically diverse bat MERSr-CoVs.
- To characterize the interaction of bat merbecoviruses with ACE2 and DPP4.
- To understand the evolutionary dynamics of MERSr-CoV receptor tropism.
Main Methods:
- Viral antigen and pseudovirus-based functional assays were employed.
- Cryo-electron microscopy was used to analyze virus-receptor interactions.
- ACE2 ortholog tropism and sensitivity to neutralizing antibodies were assessed.
Main Results:
- Several bat merbecoviruses from the HKU25 clade, previously thought to use DPP4, were found to utilize ACE2.
- Cryo-EM revealed a conserved but remodeled binding mode of HKU25 clade viruses to ACE2, distinct from HKU5.
- EjCoV-3 demonstrated broad ACE2 ortholog tropism and suboptimal human ACE2 utilization.
Conclusions:
- This study redefines the understanding of receptor usage evolution in MERSr-CoVs.
- ACE2 is a versatile functional receptor for diverse coronaviruses, including bat merbecoviruses.
- Despite differing entry mechanisms, these viruses show sensitivity to neutralizing antibodies and entry inhibitors.
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