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The Catalytic Mechanism of Human Parainfluenza Virus Type 3 Haemagglutinin‐Neuraminidase Revealed
Authors:Larissa Dirr  Dr. Ibrahim M. El‐Deeb  Dr. Patrice Guillon  Cindy J. Carroux  Dr. Leonard M. G. Chavas  Prof. Mark von Itzstein
Affiliation:1. Institute for Glycomics, Gold Coast Campus, Griffith University, Queensland, 4222 (Australia);2. Center for Free‐Electron Laser Science, Deutsches Elektronen‐Synchrotron, Notkestrasse 83, 22607, Hamburg (Germany)
Abstract:Human parainfluenza virus type 3 (hPIV‐3) is one of the leading causes for lower respiratory tract disease in children, with neither an approved antiviral drug nor vaccine available to date. Understanding the catalytic mechanism of human parainfluenza virus haemagglutinin‐neuraminidase (HN) protein is key to the design of specific inhibitors against this virus. Herein, we used 1H NMR spectroscopy, X‐ray crystallography, and virological assays to study the catalytic mechanism of the HN enzyme activity and have identified the conserved Tyr530 as a key amino acid involved in catalysis. A novel 2,3‐difluorosialic acid derivative showed prolonged enzyme inhibition and was found to react and form a covalent bond with Tyr530. Furthermore, the novel derivative exhibited enhanced potency in virus blockade assays relative to its Neu2en analogue. These outcomes open the door for a new generation of potent inhibitors against hPIV‐3 HN.
Keywords:haemagglutinin‐neuraminidase  inhibitors  parainfluenza virus  sialic acid  sialidase mechanism
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