Browsing by Author "Stalls, Victoria"
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Item Open Access Fab-dimerized glycan-reactive antibodies are a structural category of natural antibodies.(Cell, 2021-05-18) Williams, Wilton B; Meyerhoff, R Ryan; Edwards, RJ; Li, Hui; Manne, Kartik; Nicely, Nathan I; Henderson, Rory; Zhou, Ye; Janowska, Katarzyna; Mansouri, Katayoun; Gobeil, Sophie; Evangelous, Tyler; Hora, Bhavna; Berry, Madison; Abuahmad, A Yousef; Sprenz, Jordan; Deyton, Margaret; Stalls, Victoria; Kopp, Megan; Hsu, Allen L; Borgnia, Mario J; Stewart-Jones, Guillaume BE; Lee, Matthew S; Bronkema, Naomi; Moody, M Anthony; Wiehe, Kevin; Bradley, Todd; Alam, S Munir; Parks, Robert J; Foulger, Andrew; Oguin, Thomas; Sempowski, Gregory D; Bonsignori, Mattia; LaBranche, Celia C; Montefiori, David C; Seaman, Michael; Santra, Sampa; Perfect, John; Francica, Joseph R; Lynn, Geoffrey M; Aussedat, Baptiste; Walkowicz, William E; Laga, Richard; Kelsoe, Garnett; Saunders, Kevin O; Fera, Daniela; Kwong, Peter D; Seder, Robert A; Bartesaghi, Alberto; Shaw, George M; Acharya, Priyamvada; Haynes, Barton FNatural antibodies (Abs) can target host glycans on the surface of pathogens. We studied the evolution of glycan-reactive B cells of rhesus macaques and humans using glycosylated HIV-1 envelope (Env) as a model antigen. 2G12 is a broadly neutralizing Ab (bnAb) that targets a conserved glycan patch on Env of geographically diverse HIV-1 strains using a unique heavy-chain (VH) domain-swapped architecture that results in fragment antigen-binding (Fab) dimerization. Here, we describe HIV-1 Env Fab-dimerized glycan (FDG)-reactive bnAbs without VH-swapped domains from simian-human immunodeficiency virus (SHIV)-infected macaques. FDG Abs also recognized cell-surface glycans on diverse pathogens, including yeast and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike. FDG precursors were expanded by glycan-bearing immunogens in macaques and were abundant in HIV-1-naive humans. Moreover, FDG precursors were predominately mutated IgM+IgD+CD27+, thus suggesting that they originated from a pool of antigen-experienced IgM+ or marginal zone B cells.Item Open Access Mapping the SARS-CoV-2 spike glycoprotein-derived peptidome presented by HLA class II on dendritic cells.(Cell reports, 2021-05-13) Parker, Robert; Partridge, Thomas; Wormald, Catherine; Kawahara, Rebeca; Stalls, Victoria; Aggelakopoulou, Maria; Parker, Jimmy; Powell Doherty, Rebecca; Ariosa Morejon, Yoanna; Lee, Esther; Saunders, Kevin; Haynes, Barton F; Acharya, Priyamvada; Thaysen-Andersen, Morten; Borrow, Persephone; Ternette, NicolaUnderstanding and eliciting protective immune responses to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is an urgent priority. To facilitate these objectives, we profile the repertoire of human leukocyte antigen class II (HLA-II)-bound peptides presented by HLA-DR diverse monocyte-derived dendritic cells pulsed with SARS-CoV-2 spike (S) protein. We identify 209 unique HLA-II-bound peptide sequences, many forming nested sets, which map to sites throughout S including glycosylated regions. Comparison of the glycosylation profile of the S protein to that of the HLA-II-bound S peptides reveals substantial trimming of glycan residues on the latter, likely induced during antigen processing. Our data also highlight the receptor-binding motif in S1 as a HLA-DR-binding peptide-rich region and identify S2-derived peptides with potential for targeting by cross-protective vaccine-elicited responses. Results from this study will aid analysis of CD4+ T cell responses in infected individuals and vaccine recipients and have application in next-generation vaccine design.Item Open Access The functions of SARS-CoV-2 neutralizing and infection-enhancing antibodies in vitro and in mice and nonhuman primates.(bioRxiv, 2021-02-18) Li, Dapeng; Edwards, Robert J; Manne, Kartik; Martinez, David R; Schäfer, Alexandra; Alam, S Munir; Wiehe, Kevin; Lu, Xiaozhi; Parks, Robert; Sutherland, Laura L; Oguin, Thomas H; McDanal, Charlene; Perez, Lautaro G; Mansouri, Katayoun; Gobeil, Sophie MC; Janowska, Katarzyna; Stalls, Victoria; Kopp, Megan; Cai, Fangping; Lee, Esther; Foulger, Andrew; Hernandez, Giovanna E; Sanzone, Aja; Tilahun, Kedamawit; Jiang, Chuancang; Tse, Longping V; Bock, Kevin W; Minai, Mahnaz; Nagata, Bianca M; Cronin, Kenneth; Gee-Lai, Victoria; Deyton, Margaret; Barr, Maggie; Holle, Tarra Von; Macintyre, Andrew N; Stover, Erica; Feldman, Jared; Hauser, Blake M; Caradonna, Timothy M; Scobey, Trevor D; Rountree, Wes; Wang, Yunfei; Moody, M Anthony; Cain, Derek W; DeMarco, C Todd; Denny, ThomasN; Woods, Christopher W; Petzold, Elizabeth W; Schmidt, Aaron G; Teng, I-Ting; Zhou, Tongqing; Kwong, Peter D; Mascola, John R; Graham, Barney S; Moore, Ian N; Seder, Robert; Andersen, Hanne; Lewis, Mark G; Montefiori, David C; Sempowski, Gregory D; Baric, Ralph S; Acharya, Priyamvada; Haynes, Barton F; Saunders, Kevin OSARS-CoV-2 neutralizing antibodies (NAbs) protect against COVID-19. A concern regarding SARS-CoV-2 antibodies is whether they mediate disease enhancement. Here, we isolated NAbs against the receptor-binding domain (RBD) and the N-terminal domain (NTD) of SARS-CoV-2 spike from individuals with acute or convalescent SARS-CoV-2 or a history of SARS-CoV-1 infection. Cryo-electron microscopy of RBD and NTD antibodies demonstrated function-specific modes of binding. Select RBD NAbs also demonstrated Fc receptor-γ (FcγR)-mediated enhancement of virus infection in vitro , while five non-neutralizing NTD antibodies mediated FcγR-independent in vitro infection enhancement. However, both types of infection-enhancing antibodies protected from SARS-CoV-2 replication in monkeys and mice. Nonetheless, three of 31 monkeys infused with enhancing antibodies had higher lung inflammation scores compared to controls. One monkey had alveolar edema and elevated bronchoalveolar lavage inflammatory cytokines. Thus, while in vitro antibody-enhanced infection does not necessarily herald enhanced infection in vivo , increased lung inflammation can occur in SARS-CoV-2 antibody-infused macaques.