Isolation and Structure of an Antibody that Fully Neutralizes Isolate SIVmac239 Reveals Functional Similarity of SIV and HIV Glycan Shields
IMMUNITY
Authors: Gorman, Jason; Mason, Rosemarie D.; Nettey, Leonard; Cavett, Nicole; Chuang, Gwo-Yu; Peng, Dongjun; Tsybovsky, Yaroslav; Verardi, Raffaello; Nguyen, Richard; Ambrozak, David; Biris, Kristin; LaBranche, Celia C.; Ramesh, Akshaya; Schramm, Chaim A.; Zhou, Jing; Bailer, Robert T.; Kepler, Thomas B.; Montefiori, David C.; Shapiro, Lawrence; Douek, Daniel C.; Mascola, John R.; Roederer, Mario; Kwong, Peter D.
Abstract
HIV- and SIV-envelope (Env) trimers are both extensively glycosylated, and antibodies identified to date have been unable to fully neutralize SIVmac239. Here, we report the isolation, structure, and glycan interactions of antibody ITS90.03, a monoclonal antibody that completely neutralized the highly neutralization-resistant isolate, SIVmac239. The co-crystal structure of a fully glycosylated SIVmac239-gp120 core in complex with rhesus CD4 and the antigen-binding fragment of ITS90.03 at 2.5-angstrom resolution revealed that ITS90 recognized an epitope comprised of 45% glycan. SIV-gp120 core, rhesus CD4, and their complex could each be aligned structurally to their human counterparts. The structure revealed that glycans masked most of the SIV Env protein surface, with ITS90 targeting a glycan hole, which is occupied in similar to 83% of SIV strains by glycan N238. Overall, the SIV glycan shield appears to functionally resemble its HIV counterpart in coverage of spike, shielding from antibody, and modulation of receptor accessibility.
Antibody-Induced Internalization of HIV-1 Env Proteins Limits Surface Expression of the Closed Conformation of Env
JOURNAL OF VIROLOGY
Authors: Anand, Sai Priya; Grover, Jonathan R.; Tolbert, William D.; Prevost, Jrmie; Richard, Jonathan; Ding, Shilei; Baril, Sophie; Medjahed, Halima; Evans, David T.; Pazgier, Marzena; Mothes, Walther; Finzi, Andrs
Abstract
To minimize immune responses against infected cells, HIV-1 limits the surface expression of its envelope glycoprotein (Env). Here, we demonstrate that this mechanism is specific for the Env conformation and affects the efficiency of antibody-dependent cellular cytotoxicity (ADCC). Using flow cytometry and confocal microscopy, we show that broadly neutralizing antibodies (bNAbs) targeting the "closed" conformation of Env induce its internalization from the surface. In contrast, non-neutralizing antibodies (nNAbs) are displayed on the cell surface for prolonged period of times. The bNAb-induced Env internalization can be decreased by blocking dynamin function, which translates into higher susceptibilities of infected cells to ADCC. Our results suggest that antibody-mediated Env internalization is a mechanism used by HIV-1 to evade immune responses against the "closed" conformation of Env expressed on HIV-1-infected cells. IMPORTANCE HIV-1 has evolved to acquire several strategies to limit the exposure of its envelope glycoproteins (Env) on the surface of infected cells. In this study, we show that antibody-induced Env internalization is conformation specific and reduces the susceptibility of infected cells to antibody-dependent cellular cytotoxicity (ADCC). cc) Thus, a better understanding of this mechanism might help develop antibodies with improved capacities to mediate ADCC.