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- W2181796250 abstract "In this paper we study influenza viral membrane deformation related to the refolding of Hemagglutinin (HA) protein. The focus of the paper is to un- derstand membrane deformation and budding due to experimentally observed linear HA-protein clusters, which have not been mathematically studied before. The viral membrane is modeled as a two dimensional incompressible lipid bilayer with bending rigidity. For tensionless membranes, we derive an analytical solution while for membrane under tension we solve the problem numerically. Our solu- tion for tensionless membranes shows that the height of membrane deformation increases monotonically with the bending moment exerted by HA-proteins and at- tains its maximum when the size of the protein cluster reaches a critical value. Our results also show that the hypothesis of dimple formation proposed in the litera- ture is valid in the two dimensional setting. Our comparative study of axisymmet- ric HA-clusters and linear HA-clusters reveals that the linear HA-clusters are not favorable to provide a sufficient energy required to overcome an energy barrier for a successful fusion, despite their capability to cause membrane deformation and budding. AMS subject classifications: 92C05, 92B05, 92B99" @default.
- W2181796250 created "2016-06-24" @default.
- W2181796250 creator A5064042564 @default.
- W2181796250 creator A5068906351 @default.
- W2181796250 date "2010-06-01" @default.
- W2181796250 modified "2023-09-23" @default.
- W2181796250 title "Influenza Viral Membrane Deformation due to Refolding of HA-protein: Two-dimensional Model and Analysis" @default.
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- W2181796250 doi "https://doi.org/10.4208/aamm.09-m0954" @default.
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