It is generally believed that during the sexual transmission of HIV-1, the glycan-specific DC-SIGN receptor binds the virus and mediates its transfer to CD4(+) cells. The lectins griffithsin (GRFT), cyanovirin-N (CV-N) and scytovirin (SVN) inhibit HIV-1 infection by binding to mannose-rich glycans on gp120. We measured the ability of these lectins to inhibit both the HIV-1 binding to DC-SIGN and the DC-SIGN-mediated HIV-1 infection of CD4(+) cells. While GRFT, CV-N and SVN were moderately inhibitory to DC-SIGN binding, they potently inhibited DC-SIGN-transfer of HIV-1. The introduction of the 234 glycosylation site abolished HIV-1 sensitivity to lectin inhibition of binding to DC-SIGN and virus transfer to susceptible cells. However, the addition of the 295 glycosylation site increased the inhibition of transfer. Our data suggest that GRFT, CV-N and SVN can block two important stages of the sexual transmission of HIV-1, DC-SIGN binding and transfer, supporting their further development as microbicides.
Reference:
Alexandre, KB, Gray, ES, Mufhandu, H, McMahon, JB, Chakauya, E, O'Keefe, BR, Chikwamba, R and Morris, L. The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4+ cells. Virology, vol. 423(2), pp 175-186
Alexandre, K. B., Gray, E., Mufhandu, H. T., McMahon, J., Chakauya, E., O'Keefe, B., ... Morris, L. (2012). The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4+ cells. http://hdl.handle.net/10204/5672
Alexandre, Kabamba B, ES Gray, Hazel T Mufhandu, JB McMahon, E Chakauya, BR O'Keefe, Rachel K Chikwamba, and L Morris "The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4+ cells." (2012) http://hdl.handle.net/10204/5672
Alexandre KB, Gray E, Mufhandu HT, McMahon J, Chakauya E, O'Keefe B, et al. The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4+ cells. 2012; http://hdl.handle.net/10204/5672.