Crystal structure of the multifunctional paramyxovirus hemagglutinin-neuraminidase

S Crennell, T Takimoto, A Portner, G Taylor - Nature structural biology, 2000 - nature.com
S Crennell, T Takimoto, A Portner, G Taylor
Nature structural biology, 2000nature.com
Paramyxoviruses are the main cause of respiratory disease in children. One of two viral
surface glycoproteins, the hemagglutinin-neuraminidase (HN), has several functions in
addition to being the major surface antigen that induces neutralizing antibodies. Here we
present the crystal structures of Newcastle disease virus HN alone and in complex with
either an inhibitor or with the β-anomer of sialic acid. The inhibitor complex reveals a typical
neuraminidase active site within a β-propeller fold. Comparison of the structures of the two …
Abstract
Paramyxoviruses are the main cause of respiratory disease in children. One of two viral surface glycoproteins, the hemagglutinin-neuraminidase (HN), has several functions in addition to being the major surface antigen that induces neutralizing antibodies. Here we present the crystal structures of Newcastle disease virus HN alone and in complex with either an inhibitor or with the β-anomer of sialic acid. The inhibitor complex reveals a typical neuraminidase active site within a β-propeller fold. Comparison of the structures of the two complexes reveal differences in the active site, suggesting that the catalytic site is activated by a conformational switch. This site may provide both sialic acid binding and hydrolysis functions since there is no evidence for a second sialic acid binding site in HN. Evidence for a single site with dual functions is examined and supported by mutagenesis studies. The structure provides the basis for the structure-based design of inhibitors for a range of paramyxovirus-induced diseases.
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