๐ Influenza C virus and bovine coronavirus esterase reveal a similar catalytic mechanism: New insights for drug discovery
Both, the influenza C (INF-C) virus haemagglutinin esterase fusion and bovine coronavirus (BCoV) haemagglutinin esterase surface glycoproteins exhibit a lectin binding capability and a receptor-destroying 9-O-acetyl esterase activity that recognise 9-O-acetyl-N-acetylneuraminic acid (Neu5,9Ac 2)-containing glycans. Here we report nuclear magnetic resonance and molecular modelling studies on the 9-O-acetyl esterase showing that the ฮฑ-configured Neu5,9Ac2 is strictly preferred by the INF-C and BCoV esterases. Interestingly, we have discovered that the INF-C esterase function releases acetate independently of the chemical nature of the aglycon moiety, whereas subtle differences in substrate recognition were found for BCoV esterase. Analysis of the apo and complexed X-ray crystal structure of INF-C esterase revealed that binding of 9-O-acetylated N-acetylneuraminic acids is a dynamic process that involves conformational rearrangement of serine-57 in the esterase active site. This study provides valuable insights towards the design of drugs to combat INF-C virus and coronavirus infections causing outbreaks of upper respiratory infections and severe diarrhea in calves, respectively. ยฉ 2007 Springer Science+Business Media, LLC.
keywords
๐ bovine coronavirus (221)
๐ magnetic resonance (14)
๐ coronavirus infection (270)
๐ crystal structure (114)
author
๐ค Mayr, Juliane
๐ค Haselhorst, Thomas
๐ค Langereis, Martijn A.
๐ค Dyason, Jeffrey C.
๐ค Huber, Wolfgang
๐ค Frey, Barbara
๐ค Vlasak, Reinhard
๐ค De Groot, Raoul J.
๐ค Von Itzstein, Mark
year
โฐ 2008
journal
๐ Glycoconjugate Journal
issn
๐ 02820080 15734986
volume
25
number
5
page
393-399
citedbycount
5
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