Structure-based design of stabilized recombinant influenza neuraminidase tetramers

Author:

Ellis Daniel,Lederhofer JuliaORCID,Acton Oliver J.ORCID,Tsybovsky YaroslavORCID,Kephart SallyORCID,Yap Christina,Gillespie Rebecca A.ORCID,Creanga AdrianORCID,Olshefsky AudreyORCID,Stephens Tyler,Pettie Deleah,Murphy MichaelORCID,Sydeman Claire,Ahlrichs Maggie,Chan Sidney,Borst Andrew J.,Park Young-JunORCID,Lee Kelly K.ORCID,Graham Barney S.ORCID,Veesler DavidORCID,King Neil P.ORCID,Kanekiyo MasaruORCID

Abstract

AbstractInfluenza virus neuraminidase (NA) is a major antiviral drug target and has recently reemerged as a key target of antibody-mediated protective immunity. Here we show that recombinant NAs across non-bat subtypes adopt various tetrameric conformations, including an “open” state that may help explain poorly understood variations in NA stability across viral strains and subtypes. We use homology-directed protein design to uncover the structural principles underlying these distinct tetrameric conformations and stabilize multiple recombinant NAs in the “closed” state, yielding two near-atomic resolution structures of NA by cryo-EM. In addition to enhancing thermal stability, conformational stabilization improves affinity to protective antibodies elicited by viral infection, including antibodies targeting a quaternary epitope and the broadly conserved catalytic site. Stabilized NAs can also be integrated into viruses without affecting fitness. Our findings provide a deeper understanding of NA structure, stability, and antigenicity, and establish design strategies for reinforcing the conformational integrity of recombinant NA proteins.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of Allergy and Infectious Diseases

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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