Published June 29, 2023 | Version Published + Supplemental Material
Journal Article Open

Lung Surfactant Protein B Peptide Mimics Interact with the Human ACE2 Receptor

  • 1. ROR icon University of California, Los Angeles
  • 2. ROR icon California Institute of Technology

Abstract

Lung surfactant is a complex mixture of phospholipids and surfactant proteins that is produced in alveolar type 2 cells. It prevents lung collapse by reducing surface tension and is involved in innate immunity. Exogenous animal-derived and, more recently, synthetic lung surfactant has shown clinical efficacy in surfactant-deficient premature infants and in critically ill patients with acute respiratory distress syndrome (ARDS), such as those with severe COVID-19 disease. COVID-19 pneumonia is initiated by the binding of the viral receptor-binding domain (RBD) of SARS-CoV-2 to the cellular receptor angiotensin-converting enzyme 2 (ACE2). Inflammation and tissue damage then lead to loss and dysfunction of surface activity that can be relieved by treatment with an exogenous lung surfactant. Surfactant protein B (SP-B) is pivotal for surfactant activity and has anti-inflammatory effects. Here, we study the binding of two synthetic SP-B peptide mimics, Super Mini-B (SMB) and B-YL, to a recombinant human ACE2 receptor protein construct using molecular docking and surface plasmon resonance (SPR) to evaluate their potential as antiviral drugs. The SPR measurements confirmed that both the SMB and B-YL peptides bind to the rhACE2 receptor with affinities like that of the viral RBD–ACE2 complex. These findings suggest that synthetic lung surfactant peptide mimics can act as competitive inhibitors of the binding of viral RBD to the ACE2 receptor.

Additional Information

© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). This manuscript is dedicated to our colleague and friend Larry M. Gordon (1949–2023). This research was funded by a Seed Grant (32526-01R) from The Lundquist Institute for Biomedical Innovation at Harbor-UCLA Medical Center, Torrance, CA 90502, USA. Author Contributions: Conceptualization, A.J.W. and F.J.W.; Formal analysis, A.J.W., G.C.-L.J., S.K.S. and F.J.W.; Funding acquisition, F.J.W.; Investigation, A.J.W., G.C.-L.J., S.K.S. and F.J.W.; Methodology, A.J.W., G.C.-L.J., S.K.S. and F.J.W.; Writing—original draft, A.J.W. and F.J.W.; Writing—review and editing, A.J.W., G.C.-L.J., S.K.S. and F.J.W. All authors have read and agreed to the published version of the manuscript. Informed Consent Statement: Not applicable. Data Availability Statement: Data is contained within the Supplementary Materials. Conflicts of Interest: Frans Walther and Alan Waring and the Lundquist Institute for Biomedical Innovation at Harbor-UCLA Medical Center hold patents on Super Mini-B (US 8,563,683) and B-YL (US 10,717,777) SP-B peptide mimics.

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Published - ijms-24-10837.pdf

Supplemental Material - ijms-24-10837-s001.zip

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Additional details

Identifiers

PMCID
PMC10341807
Eprint ID
122427
Resolver ID
CaltechAUTHORS:20230725-49070000.11

Funding

Lundquist Institute for Biomedical Innovation
32526-01R

Dates

Created
2023-08-11
Created from EPrint's datestamp field
Updated
2023-08-14
Created from EPrint's last_modified field