A glycerophospholipid-specific pocket in the RVFV class II fusion protein drives target membrane insertion

Publication date

2017-11-03

Authors

Guardado-Calvo, P
Atkovska, K
Jeffers, S.V.
Grau, N
Backovic, M
Pérez-Vargas, J
de Boer, S.M.ISNI 0000000419432495
Tortorici, M Alejandra
Pehau-Arnaudet, G.
Lepault, J.

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Article
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Abstract

The Rift Valley fever virus (RVFV) is transmitted by infected mosquitoes, causing severe disease in humans and livestock across Africa. We determined the x-ray structure of the RVFV class II fusion protein Gc in its postfusion form and in complex with a glycerophospholipid (GPL) bound in a conserved cavity next to the fusion loop. Site-directed mutagenesis and molecular dynamics simulations further revealed a built-in motif allowing en bloc insertion of the fusion loop into membranes, making few nonpolar side-chain interactions with the aliphatic moiety and multiple polar interactions with lipid head groups upon membrane restructuring. The GPL head-group recognition pocket is conserved in the fusion proteins of other arthropod-borne viruses, such as Zika and chikungunya viruses, which have recently caused major epidemics worldwide.

Keywords

Coronacrisis-Taverne

Citation

Guardado-Calvo, P, Atkovska, K, Jeffers, S A, Grau, N, Backovic, M, Pérez-Vargas, J, de Boer, S M, Tortorici, M A, Pehau-Arnaudet, G, Lepault, J, England, P, Rottier, P J, Bosch, B J, Hub, J S & Rey, F A 2017, 'A glycerophospholipid-specific pocket in the RVFV class II fusion protein drives target membrane insertion', Science, vol. 358, no. 6363, pp. 663-667. https://doi.org/10.1126/science.aal2712