TY - JOUR
T1 - Regulation of paramyxovirus fusion activation, the hemagglutinin-neuraminidase protein stabilizes the fusion protein in a pretriggered state
AU - Porotto, Matteo
AU - Salah, Zuhair W.
AU - Gui, Long
AU - DeVito, Ilaria
AU - Jurgens, Eric M.
AU - Lu, Hong
AU - Yokoyama, Christine C.
AU - Palermo, Laura M.
AU - Lee, Kelly K.
AU - Moscona, Anne
PY - 2012/12
Y1 - 2012/12
N2 - The hemagglutinin (HA)-neuraminidase protein (HN) of paramyxoviruses carries out three discrete activities, each of which affects the ability of HN to promote viral fusion and entry, receptor binding, receptor cleaving (neuraminidase), and triggering of the fusion protein. Binding of HN to its sialic acid receptor on a target cell triggers its activation of the fusion protein (F), which then inserts into the target cell and mediates the membrane fusion that initiates infection. We provide new evidence for a fourth function of HN, stabilization of the F protein in its pretriggered state before activation. Influenza virus hemagglutinin protein (uncleaved HA) was used as a nonspecific binding protein to tether F-expressing cells to target cells, and heat was used to activate F, indicating that the prefusion state of F can be triggered to initiate structural rearrangement and fusion by temperature. HN expression along with uncleaved HA and F enhances the F activation if HN is permitted to engage the receptor. However, if HN is prevented from engaging the receptor by the use of a small compound, temperature-induced F activation is curtailed. The results indicate that HN helps stabilize the prefusion state of F, and analysis of a stalk domain mutant HN reveals that the stalk domain of HN mediates the F-stabilization effect.
AB - The hemagglutinin (HA)-neuraminidase protein (HN) of paramyxoviruses carries out three discrete activities, each of which affects the ability of HN to promote viral fusion and entry, receptor binding, receptor cleaving (neuraminidase), and triggering of the fusion protein. Binding of HN to its sialic acid receptor on a target cell triggers its activation of the fusion protein (F), which then inserts into the target cell and mediates the membrane fusion that initiates infection. We provide new evidence for a fourth function of HN, stabilization of the F protein in its pretriggered state before activation. Influenza virus hemagglutinin protein (uncleaved HA) was used as a nonspecific binding protein to tether F-expressing cells to target cells, and heat was used to activate F, indicating that the prefusion state of F can be triggered to initiate structural rearrangement and fusion by temperature. HN expression along with uncleaved HA and F enhances the F activation if HN is permitted to engage the receptor. However, if HN is prevented from engaging the receptor by the use of a small compound, temperature-induced F activation is curtailed. The results indicate that HN helps stabilize the prefusion state of F, and analysis of a stalk domain mutant HN reveals that the stalk domain of HN mediates the F-stabilization effect.
UR - http://www.scopus.com/inward/record.url?scp=84869204459&partnerID=8YFLogxK
U2 - 10.1128/JVI.01965-12
DO - 10.1128/JVI.01965-12
M3 - Article
C2 - 22993149
AN - SCOPUS:84869204459
SN - 0022-538X
VL - 86
SP - 12838
EP - 12848
JO - Journal of virology
JF - Journal of virology
IS - 23
ER -