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Probing altered receptor specificities of antigenically drifting human H3N2 viruses by chemoenzymatic synthesis, NMR, and modeling

Nat Commun. 2024-04; 
Luca Unione, Augustinus N A Ammerlaan, Gerlof P Bosman, Elif Uslu, Ruonan Liang, Frederik Broszeit, Roosmarijn van der Woude, Yanyan Liu, Shengzhou Ma, Lin Liu, Marcos Gómez-Redondo, Iris A Bermejo, Pablo Valverde, Tammo Diercks, Ana Ardá, Robert P de Vries, Geert-Jan Boons
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摘要

Prototypic receptors for human influenza viruses are N-glycans carrying α2,6-linked sialosides. Due to immune pressure, A/H3N2 influenza viruses have emerged with altered receptor specificities that bind α2,6-linked sialosides presented on extended N-acetyl-lactosamine (LacNAc) chains. Here, binding modes of such drifted hemagglutinin's (HAs) are examined by chemoenzymatic synthesis of N-glycans having C-labeled monosaccharides at strategic positions. The labeled glycans are employed in 2D STD-H by C-HSQC NMR experiments to pinpoint which monosaccharides of the extended LacNAc chain engage with evolutionarily distinct HAs. The NMR data in combination with computation and mutagenesis demonstrate that mutations... More

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