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March 21, 2026Journal of Biological Chemistry0 citationsOpen Access

Targeting Nipah virus replication: a fluorescence polarization assay for high-throughput modulators screening against the NTAIL-XD interaction

HBHugo BostCDCarine DerviauxSLSonia Longhi

Key Points

  • To develop a robust assay for screening modulators of Nipah virus replication targeting the NTAIL-XD interaction.
  • Developed a competitive fluorescence polarization assay for high-throughput screening.
  • Engineered a Thioredoxin-XD (TXD) fusion construct to enhance assay parameters.
  • Assessed assay tolerance to DMSO at concentrations up to 10%.
  • Calculated Z'-factor for assay reliability and applied to screen a large chemical library.
  • Achieved an excellent Z'-factor mean value of 0.8, indicating high assay quality.
  • Screened over 10,000 compounds identifying a primary hit rate of 0.81%.
  • Identified both stabilizers and inhibitors of the NTAIL-XD interaction.

Abstract

Nipah virus (NiV) is a biosafety level 4 (BSL-4) pathogen for which no licensed antiviral or vaccine is currently available.Given its pandemic potential and the serious threat it poses to human health, there is an urgent need for robust assays enabling the screening of chemical libraries in search of antiviral candidates.Here, we report the development of a highthroughput (HTP) competitive fluorescence polarization (CFP) assay designed to screen compound libraries and identify modulators of the NiV N TAIL -P XD interaction.Using an initial minimal setup, we successfully titrated and displaced this interaction with a non-labelled peptide serving as a reference competitor.To enhance both assay window and dynamic range, we engineered a Thioredoxin-XD (TXD) fusion construct.We then assessed the assay's tolerance to DMSO and found that the interaction remained stable at concentrations as high as 10%.Benchmarking of the final assay conditions using a screening-scale Z'-factor calculation yielded an excellent mean value of 0.8.Finally, we applied this optimized assay to screen a protein-protein interaction (PPI)-focused chemical library of more than 10,000 compounds, resulting in a primary hit rate of 0.81%, encompassing both stabilizers and inhibitors.This assay expands the drug-discovery toolkit available against NiV and holds promise for adaptation to other Henipaviruses and, more broadly, to paramyxoviruses.

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Cite This Study

Bost et al. (2026) studied this question.

synapsesocial.com/papers/69be38006e48c4981c67812ehttps://doi.org/10.1016/j.jbc.2026.111382
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