Investigation of the Fuzzy Complex between RSV Nucleoprotein and Phosphoprotein to Optimize an Inhibition Assay by Fluorescence Polarization

Author:

Khodjoyan Silva1,Morissette Deborha1,Hontonnou Fortune2,Checa Ruano Luis34ORCID,Richard Charles-Adrien2,Sperandio Olivier3,Eléouët Jean-François2,Galloux Marie2ORCID,Durand Philippe1,Deville-Foillard Stéphanie1,Sizun Christina1ORCID

Affiliation:

1. Institut de Chimie des Substances Naturelles, CNRS, Université Paris Saclay, F-91190 Gif-sur-Yvette, France

2. Virologie et Immunologie Moléculaires, INRAE, Université Paris-Saclay, F-78350 Jouy-en-Josas, France

3. Structural Bioinformatics Unit, Department of Structural Biology and Chemistry, Institut Pasteur, Université de Paris, CNRS UMR3528, F-75015 Paris, France

4. Collège Doctoral, Sorbonne Université, F-75005 Paris, France

Abstract

The interaction between Respiratory Syncytial Virus phosphoprotein P and nucleoprotein N is essential for the formation of the holo RSV polymerase that carries out replication. In vitro screening of antivirals targeting the N-P protein interaction requires a molecular interaction model, ideally consisting of a complex between N protein and a short peptide corresponding to the C-terminal tail of the P protein. However, the flexibility of C-terminal P peptides as well as their phosphorylation status play a role in binding and may bias the outcome of an inhibition assay. We therefore investigated binding affinities and dynamics of this interaction by testing two N protein constructs and P peptides of different lengths and composition, using nuclear magnetic resonance and fluorescence polarization (FP). We show that, although the last C-terminal Phe241 residue is the main determinant for anchoring P to N, only longer peptides afford sub-micromolar affinity, despite increasing mobility towards the N-terminus. We investigated competitive binding by peptides and small compounds, including molecules used as fluorescent labels in FP. Based on these results, we draw optimized parameters for a robust RSV N-P inhibition assay and validated this assay with the M76 molecule, which displays antiviral properties, for further screening of chemical libraries.

Funder

Agence Nationale de la Recherche

LabExLERMIT

Sorbonne Université

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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