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Analysis of Group IV Viral SSHHPS Using In Vitro and In Silico Methods
Published on: December 21, 2019
Convergent use of aminopeptidase N receptor by hedgehog merbecoviruses
Peng Liu1, Qianhui Zhu2,3, Jingyi Liu4,5,6
1State Key Laboratory of Virology and Biosafety, Hubei Provincial Research Center for Basic Biological Sciences, College of Life Sciences, TaiKang Center for Life and Medical Sciences, Wuhan University, Wuhan, China.
Abstract:
Coronaviruses circulating in wildlife, such as European and Asian hedgehog merbecoviruses (EriCoVs), pose a potential transmission risk. Knowledge of viral receptors can inform risk assessment and development of countermeasures; however, the functional receptor for EriCoVs is unknown. Here we identify hedgehog aminopeptidase N (APN) as a functional receptor for various EriCoVs. Analysis of APN orthologues from 93 species reveals a restricted APN tropism for EriCoVs, primarily utilizing APN from hedgehogs and to a lesser extent felid APN. Cryogenic electron microscopy analysis of the EriCoV-APN complex reveals an APN-binding mode that is distinct from those used by alpha- and deltacoronaviruses. Functional assays suggest that proteolytic activation of EriCoV spikes can be facilitated by multiple proteases in a context- and strain-dependent manner. Neutralizing antibodies targeting the EriCoV receptor-binding domain and hedgehog APN effectively blocked EriCoV pseudovirus entry or amplification. Receptor-binding-domain-targeting antibodies were further elucidated by cryogenic electron microscopy analysis. Together, these findings can inform assessment of merbecovirus spillover and pathogenesis.
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