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Inhibition of H1 and H5 Influenza A Virus Entry by Diverse Macrocyclic Peptides Targeting the Hemagglutinin Stem Region

  • Mirte N. Pascha
  • , Vito Thijssen
  • , Julia E. Egido
  • , Mirte W. Linthorst
  • , Jipke H. Van Lanen
  • , David A.A. Van Dongen
  • , Antonius J.P. Hopstaken
  • , Frank J.M. Van Kuppeveld
  • , Joost Snijder
  • , Cornelis A.M. De Haan
  • , Seino A.K. Jongkees*
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Influenza A viruses pose a serious pandemic risk, while generation of efficient vaccines against seasonal variants remains challenging. There is thus a pressing need for new treatment options. We report here a set of macrocyclic peptides that inhibit influenza A virus infection at low nanomolar concentrations by binding to hemagglutinin, selected using ultrahigh-Throughput screening of a diverse peptide library. The peptides are active against both H1 and H5 variants, with no detectable cytotoxicity. Despite the high sequence diversity across hits, all tested peptides were found to bind to the same region in the hemagglutinin stem by HDX-MS epitope mapping. A mutation in this region identified in an escape variant confirmed the binding site. This stands in contrast to the immunodominance of the head region for antibody binding and suggests that macrocyclic peptides from in vitro display may be well suited for finding new druggable sites not revealed by antibodies. Functional analysis indicates that these peptides stabilize the prefusion conformation of the protein and thereby prevent virus-cell fusion. High-Throughput screening of macrocyclic peptides is thus shown here to be a powerful method for the discovery of novel broadly acting viral fusion inhibitors with therapeutic potential.

Original languageEnglish
Pages (from-to)2425-2436
Number of pages12
JournalACS chemical biology
Volume17
Issue number9
Early online date4 Aug 2022
DOIs
Publication statusPublished - 16 Sept 2022

Bibliographical note

Funding Information:
The present work was part of the research program of the Netherlands Centre for One Health ( www.ncoh.nl ) and was financially supported by the One Health Investment Fund from the Faculty of Veterinary Medicine of Utrecht University. M.L. and J.S. would like to thank D. Hagemans for technical assistance and everyone in the Biomolecular Mass Spectrometry and Proteomics group at Utrecht University for support and helpful discussions. M.L. and J.S. are funded by the Dutch Research Council NWO Gravitation 2013 BOO, Institute for Chemical Immunology (ICI; 024.002.009). S.A.K.J. and V.T. are grateful for financial support from the Chemical Biology and Drug Discovery group at Utrecht University and would like to thank J. Kruitzer for technical support in peptide synthesis. S.A.K.J. and C.A.M.H. are grateful for financial support from a 3Rs stimulus fund from the Animal Welfare Body Utrecht. The H3N1 virus was kindly provided by R. Fouchier (Erasmus Medical Center, the Netherlands). The authors thank the Utrecht Sequencing Facility for providing sequencing service and data. Utrecht Sequencing Facility is subsidized by the University Medical Center Utrecht, Hubrecht Institute, Utrecht University, and The Netherlands X-omics Initiative (NWO project 184.034.019).

Publisher Copyright:
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Funding

The present work was part of the research program of the Netherlands Centre for One Health ( www.ncoh.nl ) and was financially supported by the One Health Investment Fund from the Faculty of Veterinary Medicine of Utrecht University. M.L. and J.S. would like to thank D. Hagemans for technical assistance and everyone in the Biomolecular Mass Spectrometry and Proteomics group at Utrecht University for support and helpful discussions. M.L. and J.S. are funded by the Dutch Research Council NWO Gravitation 2013 BOO, Institute for Chemical Immunology (ICI; 024.002.009). S.A.K.J. and V.T. are grateful for financial support from the Chemical Biology and Drug Discovery group at Utrecht University and would like to thank J. Kruitzer for technical support in peptide synthesis. S.A.K.J. and C.A.M.H. are grateful for financial support from a 3Rs stimulus fund from the Animal Welfare Body Utrecht. The H3N1 virus was kindly provided by R. Fouchier (Erasmus Medical Center, the Netherlands). The authors thank the Utrecht Sequencing Facility for providing sequencing service and data. Utrecht Sequencing Facility is subsidized by the University Medical Center Utrecht, Hubrecht Institute, Utrecht University, and The Netherlands X-omics Initiative (NWO project 184.034.019).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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