Aminopeptidase N is a receptor for hedgehog merbecoviruses

Merbecoviruses, closely related to the Middle East respiratory syndrome coronavirus, circulate in hedgehogs throughout Europe and Asia, raising concerns about zoonotic transmission to humans and domestic animals. However, it is not clear how these viruses enter host cells. Here we tested three coronavirus receptors from European hedgehogs (Erinaceus europaeus) in cell-based assays and identified aminopeptidase N (APN) as a receptor for hedgehog merbecoviruses. We verified it by pseudotype experiments using an in vitro reporter system based on replication competent vesicular stomatitis virus and protein binding assays. Hedgehog coronavirus spike proteins showed enhanced infectivity when produced at 33 °C, approximating the physiological hedgehog body temperature, as compared with 37 °C. A screen of 30 mammalian APN orthologues showed restricted cross-species receptor use, including the inability to use human APN. Electron cryomicroscopy revealed a distinct glycoprotein–receptor interface unlike known coronavirus spike–APN interactions, clarifying species barriers. These findings broaden our understanding of receptor use across merbecoviruses and betacoronaviruses and inform risk assessments for viral emergence. Hedgehog merbecoviruses utilize hedgehog aminopeptidase N, but not the human orthologue, as their entry receptor. Structural resolution of the glycoprotein–receptor interface reveals the molecular interactions underlying this species-specific barrier.

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Publication Details

Journal
Nature Microbiology
Published
2026-09-16
DOI
https://doi.org/10.1038/s41564-026-02447-8
Primary Topic
Viral-associated cancers and disorders
Type
article
Field-Weighted Citation Impact
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article

Aminopeptidase N is a receptor for hedgehog merbecoviruses

Victoria A. Jefferson, Ilaria Di Bartolo, Michael Letko, Gabriele Vaccari et al.
Nature Microbiology
Viral-associated cancers and disorders
article

Aminopeptidase N is a receptor for hedgehog merbecoviruses

Victoria A. Jefferson, Ilaria Di Bartolo, Michael Letko, Gabriele Vaccari, Tyler N. Starr, Min Jin, Adrian A. Castellanos, Ralph S. Baric, Barbara A. Han, Stephanie N. Seifert, James M. Rini, Daniel C. Douek, Alicen B. Spaulding, Boyd L. Yount, Nicholas Catanzaro, Emma L. Keeler, Anna Castelli, Bridget L. Menasché, Luca De Sabato, Craig B. Wilen, Zhe Zhao, C E Hoffman, Ana Moreno, Leonid Serebryannyy
article en

Abstract

Merbecoviruses, closely related to the Middle East respiratory syndrome coronavirus, circulate in hedgehogs throughout Europe and Asia, raising concerns about zoonotic transmission to humans and domestic animals. However, it is not clear how these viruses enter host cells. Here we tested three coronavirus receptors from European hedgehogs (Erinaceus europaeus) in cell-based assays and identified aminopeptidase N (APN) as a receptor for hedgehog merbecoviruses. We verified it by pseudotype experiments using an in vitro reporter system based on replication competent vesicular stomatitis virus and protein binding assays. Hedgehog coronavirus spike proteins showed enhanced infectivity when produced at 33 °C, approximating the physiological hedgehog body temperature, as compared with 37 °C. A screen of 30 mammalian APN orthologues showed restricted cross-species receptor use, including the inability to use human APN. Electron cryomicroscopy revealed a distinct glycoprotein–receptor interface unlike known coronavirus spike–APN interactions, clarifying species barriers. These findings broaden our understanding of receptor use across merbecoviruses and betacoronaviruses and inform risk assessments for viral emergence. Hedgehog merbecoviruses utilize hedgehog aminopeptidase N, but not the human orthologue, as their entry receptor. Structural resolution of the glycoprotein–receptor interface reveals the molecular interactions underlying this species-specific barrier.

Nature Microbiology
University of North Carolina at Chapel Hill (US), National Institutes of Health (US), University of Toronto (CA), University of Utah (US), Istituto Superiore di Sanità (IT), Cary Institute of Ecosystem Studies (US), Yale University (US), Istituto Zooprofilattico Sperimentale della Lombardia e dell'Emilia Romagna "Bruno Ubertini" (IT), National Institute of Allergy and Infectious Diseases (US), Washington State University (US)
Openalex Percentile: Top 14%
Viral-associated cancers and disorders
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