Phage display identification of nanomolar ligands for human NEDD4-WW3: Energetic and dynamic implications for the development of broad-spectrum antivirals.

Int J Biol Macromol

Department of Physical Chemistry, Institute of Biotechnology and Excelence Unit in Chemistry Applied to Biomedicine and Environment, School of Sciences, University of Granada, Campus Fuentenueva s/n 18071, Granada, Spain. Electronic address:

Published: May 2022

AI Article Synopsis

  • - The study focuses on the role of the NEDD4-WW3 domain in viral budding, showing that inhibiting its interaction with viral proteins could lead to new antiviral treatments.
  • - Researchers discovered that high-affinity ligands can bind to NEDD4-WW3, improving binding through conformational changes rather than new interactions, thanks to a unique C-terminal -LFP motif in the ligands.
  • - The findings underscore the complexity of WW domain interactions and offer insights for developing effective therapeutics targeting NEDD4-WW3, potentially aiding in the design of broad-spectrum antivirals.

Article Abstract

The recognition of PPxY viral Late domains by the third WW domain of the human HECT-E3 ubiquitin ligase NEDD4 (NEDD4-WW3) is essential for the budding of many viruses. Blocking these interactions is a promising strategy to develop broad-spectrum antivirals. As all WW domains, NEDD4-WW3 is a challenging therapeutic target due to the low binding affinity of its natural interactions, its high conformational plasticity, and its complex thermodynamic behavior. In this work, we set out to investigate whether high affinity can be achieved for monovalent ligands binding to the isolated NEDD4-WW3 domain. We show that a competitive phage-display set-up allows for the identification of high-affinity peptides showing inhibitory activity of viral budding. A detailed biophysical study combining calorimetry, nuclear magnetic resonance, and molecular dynamic simulations reveals that the improvement in binding affinity does not arise from the establishment of new interactions with the domain, but is associated to conformational restrictions imposed by a novel C-terminal -LFP motif in the ligand, unprecedented in the PPxY interactome. These results, which highlight the complexity of WW domain interactions, provide valuable insight into the key elements for high binding affinity, of interest to guide virtual screening campaigns for the identification of novel therapeutics targeting NEDD4-WW3 interactions.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2022.03.010DOI Listing

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