The second receptor binding site of the globular head of the Newcastle disease virus hemagglutinin-neuraminidase activates the stalk of multiple paramyxovirus …

M Porotto, Z Salah, I DeVito, A Talekar… - Journal of …, 2012 - Am Soc Microbiol
M Porotto, Z Salah, I DeVito, A Talekar, SG Palmer, R Xu, IA Wilson, A Moscona
Journal of virology, 2012Am Soc Microbiol
The hemagglutinin-neuraminidase (HN) protein of paramyxoviruses carries out three distinct
activities contributing to the ability of HN to promote viral fusion and entry: receptor binding,
receptor cleavage (neuraminidase), and activation of the fusion protein. The relationship
between receptor binding and fusion triggering functions of HN are not fully understood. For
Newcastle disease virus (NDV), one bifunctional site (site I) on HN′ s globular head can
mediate both receptor binding and neuraminidase activities, and a second site (site II) in the …
Abstract
The hemagglutinin-neuraminidase (HN) protein of paramyxoviruses carries out three distinct activities contributing to the ability of HN to promote viral fusion and entry: receptor binding, receptor cleavage (neuraminidase), and activation of the fusion protein. The relationship between receptor binding and fusion triggering functions of HN are not fully understood. For Newcastle disease virus (NDV), one bifunctional site (site I) on HN′s globular head can mediate both receptor binding and neuraminidase activities, and a second site (site II) in the globular head is also capable of mediating receptor binding. The receptor analog, zanamivir, blocks receptor binding and cleavage activities of NDV HN′s site I while activating receptor binding by site II. Comparison of chimeric proteins in which the globular head of NDV HN is connected to the stalk region of either human parainfluenza virus type 3 (HPIV3) or Nipah virus receptor binding proteins indicates that receptor binding to NDV HN site II not only can activate its own fusion (F) protein but can also activate the heterotypic fusion proteins. We suggest a general model for paramyxovirus fusion activation in which receptor engagement at site II plays an active role in F activation.
American Society for Microbiology