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Found 708 results
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Journal Article
Dingens AS, Pratap P, Malone K, Hilton SK, Ketas T, Cottrell CA, Overbaugh J, Moore JP, Klasse PJ, Ward AB et al..  2021.  High-resolution mapping of the neutralizing and binding specificities of polyclonal sera post-HIV Env trimer vaccination.. Elife. 10
Janovitz T, Klein IA, Oliveira T, Mukherjee P, Nussenzweig MC, Sadelain M, Falck-Pedersen E.  2013.  High-throughput sequencing reveals principles of adeno-associated virus serotype 2 integration.. J Virol. 87(15):8559-68.
Alenghat T, Osborne LC, Saenz SA, Kobuley D, Ziegler CGK, Mullican SE, Choi I, Grunberg S, Sinha R, Wynosky-Dolfi M et al..  2013.  Histone deacetylase 3 coordinates commensal-bacteria-dependent intestinal homeostasis.. Nature. 504(7478):153-7.
Klasse PJ, Sanders RW, Ward AB, Wilson IA, Moore JP.  2025.  The HIV-1 envelope glycoprotein: structure, function and interactions with neutralizing antibodies.. Nat Rev Microbiol.
Sanders RW, van Gils MJ, Derking R, Sok D, Ketas TJ, Burger JA, Ozorowski G, Cupo A, Simonich C, Goo L et al..  2015.  HIV-1 VACCINES. HIV-1 neutralizing antibodies induced by native-like envelope trimers.. Science. 349(6244):aac4223.
Sanders RW, van Gils MJ, Derking R, Sok D, Ketas TJ, Burger JA, Ozorowski G, Cupo A, Simonich C, Goo L et al..  2015.  HIV-1 VACCINES. HIV-1 neutralizing antibodies induced by native-like envelope trimers.. Science. 349(6244):aac4223.
Sanders RW, van Gils MJ, Derking R, Sok D, Ketas TJ, Burger JA, Ozorowski G, Cupo A, Simonich C, Goo L et al..  2015.  HIV-1 VACCINES. HIV-1 neutralizing antibodies induced by native-like envelope trimers.. Science. 349(6244):aac4223.
Sanders RW, van Gils MJ, Derking R, Sok D, Ketas TJ, Burger JA, Ozorowski G, Cupo A, Simonich C, Goo L et al..  2015.  HIV-1 VACCINES. HIV-1 neutralizing antibodies induced by native-like envelope trimers.. Science. 349(6244):aac4223.
Capucci S, Wee EG, Schiffner T, LaBranche CC, Borthwick N, Cupo A, Dodd J, Dean H, Sattentau Q, Montefiori D et al..  2023.  HIV-1-neutralizing antibody induced by simian adenovirus- and poxvirus MVA-vectored BG505 native-like envelope trimers.. PLoS One. 18(10):e0293148.
Capucci S, Wee EG, Schiffner T, LaBranche CC, Borthwick N, Cupo A, Dodd J, Dean H, Sattentau Q, Montefiori D et al..  2023.  HIV-1-neutralizing antibody induced by simian adenovirus- and poxvirus MVA-vectored BG505 native-like envelope trimers.. PLoS One. 18(10):e0293148.
Smith CM, Baker RE, Proulx MK, Mishra BB, Long JE, Park SWoong, Lee H-N, Kiritsy MC, Bellerose MM, Olive AJ et al..  2022.  Host-pathogen genetic interactions underlie tuberculosis susceptibility in genetically diverse mice.. Elife. 11
Smith CM, Baker RE, Proulx MK, Mishra BB, Long JE, Park SWoong, Lee H-N, Kiritsy MC, Bellerose MM, Olive AJ et al..  2022.  Host-pathogen genetic interactions underlie tuberculosis susceptibility in genetically diverse mice.. Elife. 11
Smith CM, Baker RE, Proulx MK, Mishra BB, Long JE, Park SWoong, Lee H-N, Kiritsy MC, Bellerose MM, Olive AJ et al..  2022.  Host-pathogen genetic interactions underlie tuberculosis susceptibility in genetically diverse mice.. Elife. 11
Klasse PJohan, Sanders RW, Cerutti A, Moore JP.  2012.  How can HIV-type-1-Env immunogenicity be improved to facilitate antibody-based vaccine development? AIDS Res Hum Retroviruses. 28(1):1-15.
Han Y, Leng D, Zhang T, Ge J, Fang Y, Lu T, Dong X, Nair MS, de Silva N, Han Z et al..  2025.  A Human Immuno-Lung Organoid Model to Study Macrophage-Mediated Lung Cell Senescence Upon SARS-CoV-2 Infection.. Adv Sci (Weinh). 12(36):e03932.
Iliev ID, Spadoni I, Mileti E, Matteoli G, Sonzogni A, Sampietro GM, Foschi D, Caprioli F, Viale G, Rescigno M.  2009.  Human intestinal epithelial cells promote the differentiation of tolerogenic dendritic cells.. Gut. 58(11):1481-9.
Iliev ID, Spadoni I, Mileti E, Matteoli G, Sonzogni A, Sampietro GM, Foschi D, Caprioli F, Viale G, Rescigno M.  2009.  Human intestinal epithelial cells promote the differentiation of tolerogenic dendritic cells.. Gut. 58(11):1481-9.
Shimono N, Morici L, Casali N, Cantrell S, Sidders B, Ehrt S, Riley LW.  2003.  Hypervirulent mutant of Mycobacterium tuberculosis resulting from disruption of the mce1 operon.. Proc Natl Acad Sci U S A. 100(26):15918-23.
Ma X, Neurath M, Gri G, Trinchieri G.  1997.  Identification and characterization of a novel Ets-2-related nuclear complex implicated in the activation of the human interleukin-12 p40 gene promoter.. J Biol Chem. 272(16):10389-95.
Sharma I, Fang J, Lewallen EA, Deitsch KW, McCutchan TF.  2023.  Identification of a long noncoding RNA required for temperature induced expression of stage-specific rRNA in malaria parasites.. Gene. 877:147516.
Negri A, Javidnia P, Mu R, Zhang X, Vendome J, Gold B, Roberts J, Barman D, Ioerger T, Sacchettini JC et al..  2018.  Identification of a Mycothiol-Dependent Nitroreductase from Mycobacterium tuberculosis.. ACS Infect Dis. 4(5):771-787.
Green SR, Harrison JR, Thompson S, Murugesan D, M Libardo DJ, Engelhart CA, Meshanni J, Fletcher D, Scullion P, Edwards D et al..  2025.  Identification of a Series Containing a Pentafluorophenyl Moiety That Targets Pks13 to Inhibit Growth of Mycobacterium tuberculosis.. ACS Infect Dis. 11(3):715-726.
Green SR, Harrison JR, Thompson S, Murugesan D, M Libardo DJ, Engelhart CA, Meshanni J, Fletcher D, Scullion P, Edwards D et al..  2025.  Identification of a Series Containing a Pentafluorophenyl Moiety That Targets Pks13 to Inhibit Growth of Mycobacterium tuberculosis.. ACS Infect Dis. 11(3):715-726.
Green SR, Harrison JR, Thompson S, Murugesan D, M Libardo DJ, Engelhart CA, Meshanni J, Fletcher D, Scullion P, Edwards D et al..  2025.  Identification of a Series Containing a Pentafluorophenyl Moiety That Targets Pks13 to Inhibit Growth of Mycobacterium tuberculosis.. ACS Infect Dis. 11(3):715-726.
Early J, Ollinger J, Darby C, Alling T, Mullen S, Casey A, Gold B, Ochoada J, Wiernicki T, Masquelin T et al..  2019.  Identification of Compounds with pH-Dependent Bactericidal Activity against Mycobacterium tuberculosis.. ACS Infect Dis. 5(2):272-280.