Person: Seaman, Michael
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Publication LabKey Server NAb: A Tool for Analyzing, Visualizing and Sharing Results from Neutralizing Antibody Assays
(BioMed Central, 2011) Piehler, Britt; Nelson, Elizabeth K.; Eckels, Josh; Ramsay, Sarah; Lum, Karl; Wood, Blake; Greene, Kelli M.; Gao, Hongmei; Montefiori, David C.; Igra, Mark; Seaman, MichaelBackground: Multiple types of assays allow sensitive detection of virus-specific neutralizing antibodies. For example, the extent of antibody neutralization of HIV-1, SIV and SHIV can be measured in the TZM-bl cell line through the degree of luciferase reporter gene expression after infection. In the past, neutralization curves and titers for this standard assay have been calculated using an Excel macro. Updating all instances of such a macro with new techniques can be unwieldy and introduce non-uniformity across multi-lab teams. Using Excel also poses challenges in centrally storing, sharing and associating raw data files and results. Results: We present LabKey Server's NAb tool for organizing, analyzing and securely sharing data, files and results for neutralizing antibody (NAb) assays, including the luciferase-based TZM-bl NAb assay. The customizable tool supports high-throughput experiments and includes a graphical plate template designer, allowing researchers to quickly adapt calculations to new plate layouts. The tool calculates the percent neutralization for each serum dilution based on luminescence measurements, fits a range of neutralization curves to titration results and uses these curves to estimate the neutralizing antibody titers for benchmark dilutions. Results: curve visualizations and raw data files are stored in a database and shared through a secure, web-based interface. NAb results can be integrated with other data sources based on sample identifiers. It is simple to make results public after publication by updating folder security settings. Conclusions: Standardized tools for analyzing, archiving and sharing assay results can improve the reproducibility, comparability and reliability of results obtained across many labs. LabKey Server and its NAb tool are freely available as open source software at http://www.labkey.com under the Apache 2.0 license. Many members of the HIV research community can also access the LabKey Server NAb tool without installing the software by using the Atlas Science Portal (https://atlas.scharp.org). Atlas is an installation of LabKey Server.
Publication P04-41. Kinetics of Antibody Neutralization and Viral Evolution Following Envelope Vaccination in SIV-infected Rhesus Monkeys
(BioMed Central, 2009) Basavapathruni, A; Coffey, R; Hraber, P; Giri, A; Mascola, J; Nabel, G; Korber, B; Yeh, Wendy Wen-Li; Whitney, James; Rao, Sowmya R.; Seaman, Michael; Letvin, Norman LeePoster presentation. Conclusion: Our results indicate that env vaccination is associated with an accelerated development of autologous neutralizing antibodies. These antibodies were focused at least in part on the V1 region of Env, since there was selective pressure in this region of the envelope for the evolution of mutational changes.
Publication Different Pattern of Immunoglobulin Gene Usage by HIV-1 Compared to Non-HIV-1 Antibodies Derived from the Same Infected Subject
(Public Library of Science, 2012) Li, Liuzhe; Wang, Xiao-Hong; Banerjee, Sagarika; Volsky, Barbara; Williams, Constance; Virland, Diana; Nadas, Arthur; Seaman, Michael; Chen, Xuemin; Spearman, Paul; Zolla-Pazner, Susan; Gorny, Miroslaw K.A biased usage of immunoglobulin (Ig) genes is observed in human anti-HIV-1 monoclonal antibodies (mAbs) resulting probably from compensation to reduced usage of the VH3 family genes, while the other alternative suggests that this bias usage is due to antigen requirements. If the antigen structure is responsible for the preferential usage of particular Ig genes, it may have certain implications for HIV vaccine development by the targeting of particular Ig gene-encoded B cell receptors to induce neutralizing anti-HIV-1 antibodies. To address this issue, we have produced HIV-1 specific and non-HIV-1 mAbs from an infected individual and analyzed the Ig gene usage. Green-fluorescence labeled virus-like particles (VLP) expressing HIV-1 envelope (Env) proteins of JRFL and BaL and control VLPs (without Env) were used to select single B cells for the production of 68 recombinant mAbs. Ten of these mAbs were HIV-1 Env specific with neutralizing activity against V3 and the CD4 binding site, as well as non-neutralizing mAbs to gp41. The remaining 58 mAbs were non-HIV-1 Env mAbs with undefined specificities. Analysis revealed that biased usage of Ig genes was restricted only to anti-HIV-1 but not to non-HIV-1 mAbs. The VH1 family genes were dominantly used, followed by VH3, VH4, and VH5 among anti-HIV-1 mAbs, while non-HIV-1 specific mAbs preferentially used VH3 family genes, followed by VH4, VH1 and VH5 families in a pattern identical to Abs derived from healthy individuals. This observation suggests that the biased usage of Ig genes by anti-HIV-1 mAbs is driven by structural requirements of the virus antigens rather than by compensation to any depletion of VH3 B cells due to autoreactive mechanisms, according to the gp120 superantigen hypothesis.
Publication Inhibition of HCV by the serpin antithrombin III
(BioMed Central, 2012) Asmal, Mohammed; Seaman, Michael; Lin, Wenyu; Chung, Raymond; Letvin, Norman L; Geiben-Lynn, RalfBackground: Although there have been dramatic strides made recently in the treatment of chronic hepatitis C virus infection, interferon-α based therapy remains challenging for certain populations, including those with unfavorable IL28B genotypes, psychiatric co-morbidity, HIV co-infection, and decompensated liver disease. We have recently shown that ATIII, a serine protease inhibitor (serpin), has broad antiviral properties. Results: We now show that ATIII is capable of inhibiting HCV in the OR6 replicon model at micromolar concentrations. At a mechanistic level using gene-expression arrays, we found that ATIII treatment down-regulated multiple host cell signal transduction factors involved in the pathogenesis of cirrhosis and hepatocellular carcinoma, including Jun, Myc and BMP2. Using a protein interactive network analysis we found that changes in gene-expression caused by ATIII were dependent on three nodes previously implicated in HCV disease progression or HCV replication: NFκB, P38 MAPK, and ERK1/2. Conclusions: Our findings suggest that ATIII stimulates a novel innate antiviral host cell defense different from current treatment options.
Publication Potent and Broad Neutralization of HIV-1 by a Llama Antibody Elicited by Immunization
(The Rockefeller University Press, 2012) McCoy, Laura E.; Quigley, Anna Forsman; Strokappe, Nika M.; Bulmer-Thomas, Bianca; Mortier, Daniella; Rutten, Lucy; Chander, Nikita; Edwards, Carolyn J.; Ketteler, Robin; Verrips, Theo; Weiss, Robin A.; Seaman, Michael; Davis, DavidLlamas (Lama glama) naturally produce heavy chain–only antibodies (Abs) in addition to conventional Abs. The variable regions (VHH) in these heavy chain–only Abs demonstrate comparable affinity and specificity for antigens to conventional immunoglobulins despite their much smaller size. To date, immunizations in humans and animal models have yielded only Abs with limited ability to neutralize HIV-1. In this study, a VHH phagemid library generated from a llama that was multiply immunized with recombinant trimeric HIV-1 envelope proteins (Envs) was screened directly for HIV-1 neutralization. One VHH, L8CJ3 (J3), neutralized 96 of 100 tested HIV-1 strains, encompassing subtypes A, B, C, D, BC, AE, AG, AC, ACD, CD, and G. J3 also potently neutralized chimeric simian-HIV strains with HIV subtypes B and C Env. The sequence of J3 is highly divergent from previous anti–HIV-1 VHH and its own germline sequence. J3 achieves broad and potent neutralization of HIV-1 via interaction with the CD4-binding site of HIV-1 Env. This study may represent a new benchmark for immunogens to be included in B cell–based vaccines and supports the development of VHH as anti–HIV-1 microbicides.
Publication P03-07. Autologous Neutralizing Antibodies That Select Viral Escape Variants Emerge Late After SIV Infection of Rhesus Monkeys
(BioMed Central, 2009) Rahman, I; Hraber, P; Giri, A; Nevidomskyte, D; Coffey, RT; Miljkovic, S; Keele, BF; Shaw, GM; Korber, BT; Yeh, Wendy Wen-Li; Asmal, Mohammed; Whitney, James; Seaman, Michael; Letvin, Norman LeePublication A gp41 MPER-specific Llama VHH Requires a Hydrophobic CDR3 for Neutralization but not for Antigen Recognition
(Public Library of Science, 2013) Lutje Hulsik, David; Liu, Ying-ying; Strokappe, Nika M.; Battella, Simone; El Khattabi, Mohamed; McCoy, Laura E.; Sabin, Charles; Hinz, Andreas; Hock, Miriam; Macheboeuf, Pauline; Bonvin, Alexandre M. J. J.; Langedijk, Johannes P. M.; Davis, David; Forsman Quigley, Anna; Aasa-Chapman, Marlén M. I.; Seaman, Michael; Ramos, Alejandra; Poignard, Pascal; Favier, Adrien; Simorre, Jean-Pierre; Weiss, Robin A.; Verrips, C. Theo; Weissenhorn, Winfried; Rutten, LucyThe membrane proximal external region (MPER) of the HIV-1 glycoprotein gp41 is targeted by the broadly neutralizing antibodies 2F5 and 4E10. To date, no immunization regimen in animals or humans has produced HIV-1 neutralizing MPER-specific antibodies. We immunized llamas with gp41-MPER proteoliposomes and selected a MPER-specific single chain antibody (VHH), 2H10, whose epitope overlaps with that of mAb 2F5. Bi-2H10, a bivalent form of 2H10, which displayed an approximately 20-fold increased affinity compared to the monovalent 2H10, neutralized various sensitive and resistant HIV-1 strains, as well as SHIV strains in TZM-bl cells. X-ray and NMR analyses combined with mutagenesis and modeling revealed that 2H10 recognizes its gp41 epitope in a helical conformation. Notably, tryptophan 100 at the tip of the long CDR3 is not required for gp41 interaction but essential for neutralization. Thus bi-2H10 is an anti-MPER antibody generated by immunization that requires hydrophobic CDR3 determinants in addition to epitope recognition for neutralization similar to the mode of neutralization employed by mAbs 2F5 and 4E10.
Publication Antibody Responses after Intravaginal Immunisation with Trimeric HIV-1CN54 clade C gp140 in Carbopol Gel are Augmented by Systemic Priming or Boosting with an Adjuvanted Formulation
(Elsevier Science, 2011) Cranage, Martin P.; Fraser, Carol A.; Cope, Alethea; McKay, Paul F.; Cole, Tom; Mahmoud, A. Nasir; Hall, Joanna; Giles, Elaine; Voss, Gerald; Page, Mark; Almond, Neil; Shattock, Robin J.; Seaman, MichaelOptimum strategies to elicit and maintain antibodies at mucosal portals of virus entry are critical for the development of vaccines against human immunodeficiency virus (HIV). Here we show in non-human primates that a novel regimen of repeated intravaginal delivery of a non-adjuvanted, soluble recombinant trimeric HIV-1(_{CN54}) clade C envelope glycoprotein (gp140) administered in Carbopol gel can prime for B-cell responses even in the absence of seroconversion. Following 3 cycles of repeated intravaginal administration, throughout each intermenses interval, 3 of 4 macaques produced or boosted systemic and mucosally-detected antibodies upon intramuscular immunisation with gp140 formulated in AS01 adjuvant. Reciprocally, a single intramuscular immunisation primed 3 of 4 macaques for antibody boosting after a single cycle of intravaginal immunisation. Virus neutralising activity was detected against clade C and clade B HIV-1 envelopes but was restricted to highly neutralisation sensitive pseudoviruses.
Publication HIV-1 Envelope Trimer Elicits Higher Neutralizing Antibody Responses than Monomeric Gp120
(BioMed Central, 2012) Kovacs, James Monroe; Nkolola, Joseph; Peng, H; Cheung, A; Perry, J; Miller, CA; Seaman, Michael; Barouch, Dan; Chen, BingPublication The Effects of Somatic Hypermutation on Neutralization and Binding in the PGT121 Family of Broadly Neutralizing HIV Antibodies
(Public Library of Science, 2013) Sok, Devin; Laserson, U; Laserson, Jonathan; Liu, Yi; Vigneault, F; Julien, Jean-Philippe; Briney, Bryan; Ramos, Alejandra; Saye, Karen F.; Le, Khoa; Mahan, A; Wang, Shenshen; Kardar, Mehran; Yaari, Gur; Walker, Laura M.; Simen, Birgitte B.; St. John, Elizabeth P.; Chan-Hui, Po-Ying; Swiderek, Kristine; Kleinstein, Stephen H.; Alter, Galit; Seaman, Michael; Chakraborty, Arup K.; Koller, Daphne; Wilson, Ian A.; Church, George; Burton, Dennis R.; Poignard, PascalBroadly neutralizing HIV antibodies (bnAbs) are typically highly somatically mutated, raising doubts as to whether they can be elicited by vaccination. We used 454 sequencing and designed a novel phylogenetic method to model lineage evolution of the bnAbs PGT121–134 and found a positive correlation between the level of somatic hypermutation (SHM) and the development of neutralization breadth and potency. Strikingly, putative intermediates were characterized that show approximately half the mutation level of PGT121–134 but were still capable of neutralizing roughly 40–80% of PGT121–134 sensitive viruses in a 74-virus panel at median titers between 15- and 3-fold higher than PGT121–134. Such antibodies with lower levels of SHM may be more amenable to elicitation through vaccination while still providing noteworthy coverage. Binding characterization indicated a preference of inferred intermediates for native Env binding over monomeric gp120, suggesting that the PGT121–134 lineage may have been selected for binding to native Env at some point during maturation. Analysis of glycan-dependent neutralization for inferred intermediates identified additional adjacent glycans that comprise the epitope and suggests changes in glycan dependency or recognition over the course of affinity maturation for this lineage. Finally, patterns of neutralization of inferred bnAb intermediates suggest hypotheses as to how SHM may lead to potent and broad HIV neutralization and provide important clues for immunogen design.