Z. K. Alghrair, B. Ebrahimi, D. G. Fernig
FluPep is a 16 amino-acid peptide with potent anti-viral activity against influenza A virus, including the H1N1 subtype. To understand how FluPep exerts its effects, gold nanoparticles were functionalised with FluPep, since gold nanoparticles provide a very sensitive probe that can be detected optically. Our results demonstrate that nanoparticle-FluPep conjugates did not bind to influenza virus particles in vitro. However, the nanoparticle-FluPep conjugates bound to polyanions on the cell surface, and after washing cells they remained cell-associated and were able to inhibit flu virus infectivity. Nanoparticle-FluPep conjugates bound to heparin affinity columns and their binding to cells could be reduced by pre-treatment of the cells with heparinase and neuraminidase, but not with chondroitinase ABC. These data indicated that FluPep bound to heparan sulfate and sialic acid-containing glycans in the pericellular matrix and in doing so prevented viral infectivity. The importance of the interaction of FluPep with heparan sulfate (HS) was examined by extending FluPep at its C-terminus with amino acid sequences responsible for the interactions of growth factors with heparin. The resultant two new engineered peptides, termed superFluPep1 and superFluPep2, were more potent than parental FluPep. The results demonstrate that FluPep likely exerts its antiviral activity by interfering with virus-cell interactions and that enhancing the binding of such peptides to heparan sulfate is an effective strategy to increase their anti viral potency.