Mapping of functional SARS-CoV-2 receptors in human lungs establishes differences in variant binding and SLC1A5 as a viral entry modulator of hACE2.

Lara Manganaro, Stefano Biffo, Nicola Manfrini, Sergio Abrignani, Raffaele De Francesco, Renata Grifantini, Sara Ricciardi, Stefania Oliveto, Alessandra Scagliola, Mirco Toccafondi, Annarita Miluzio, Luigi Terracciano, Alessandra Fasciani, Matteo Conti, Mauro Bombaci, Elisa Pesce, Lorena Donnici, Chiara Cordiglieri, Alessandro Cuomo

Journal: EBioMedicine 2023;87():104390

PMID: 36584595

Abstract

BACKGROUND

The COVID-19 pandemic is an infectious disease caused by SARS-CoV-2. The first step of SARS-CoV-2 infection is the recognition of angiotensin-converting enzyme 2 (ACE2) receptors by the receptor-binding domain (RBD) of the viral Spike (S) glycoprotein. Although the molecular and structural bases of the SARS-CoV-2-RBD/hACE2 interaction have been thoroughly investigated in vitro, the relationship between hACE2 expression and in vivo infection is less understood.

METHODS

Here, we developed an efficient SARS-CoV-2-RBD binding assay suitable for super resolution microscopy and simultaneous hACE2 immunodetection and mapped the correlation between hACE2 receptor abundance and SARS-CoV-2-RBD binding, both in vitro and in human lung biopsies. Next, we explored the specific proteome of SARS-CoV-2-RBD/hACE2 through a comparative mass spectrometry approach.

FINDINGS

We found that only a minority of hACE2 positive spots are actually SARS-CoV-2-RBD binding sites, and that the relationship between SARS-CoV-2-RBD binding and hACE2 presence is variable, suggesting the existence of additional factors. Indeed, we found several interactors that are involved in receptor localization and viral entry and characterized one of them: SLC1A5, an amino acid transporter. High-resolution receptor-binding studies showed that co-expression of membrane-bound SLC1A5 with hACE2 predicted SARS-CoV-2 binding and entry better than hACE2 expression alone. SLC1A5 depletion reduces SARS-CoV-2 binding and entry. Notably, the Omicron variant is more efficient in binding hACE2 sites, but equally sensitive to SLC1A5 downregulation.

INTERPRETATION

We propose a method for mapping functional SARS-CoV-2 receptors in vivo. We confirm the existence of hACE2 co-factors that may contribute to differential sensitivity of cells to infection.

FUNDING

This work was supported by an unrestricted grant from "Fondazione Romeo ed Enrica Invernizzi" to Stefano Biffo and by AIRC under MFAG 2021 - ID. 26178 project - P.I. Manfrini Nicola.

Copyright © 2022 The Authors. Published by Elsevier B.V. All rights reserved.

Address: National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy.; Department of Experimental Oncology, IEO, European Institute of Oncology IRCCS, 20141, Milan, Italy.; Institute of Pathology, University Hospital Basel, 4031, Basel, Switzerland.; National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy; Department of Biosciences, University of Milan, 20133, Milan, Italy.; National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy; Department of Pharmacological and Biomolecular Sciences, University of Milan, 20133, Milan, Italy.; National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy; Department of Clinical Sciences and Community Health, University of Milan, 20122, Milan, Italy.; National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy; Department of Biosciences, University of Milan, 20133, Milan, Italy. Electronic address: [email protected].; National Institute of Molecular Genetics, "Fondazione Romeo ed Enrica Invernizzi", INGM, 20122, Milan, Italy; Department of Biosciences, University of Milan, 20133, Milan, Italy. Electronic address: [email protected].
Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.