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Found 708 results
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Journal Article
Karp CL, Wysocka M, Ma X, Marovich M, Factor RE, Nutman T, Armant M, Wahl L, Cuomo P, Trinchieri G.  1998.  Potent suppression of IL-12 production from monocytes and dendritic cells during endotoxin tolerance.. Eur J Immunol. 28(10):3128-36.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Pejchal R, Doores KJ, Walker LM, Khayat R, Huang P-S, Wang S-K, Stanfield RL, Julien J-P, Ramos A, Crispin M et al..  2011.  A potent and broad neutralizing antibody recognizes and penetrates the HIV glycan shield.. Science. 334(6059):1097-103.
Racine-Brzostek SE, Yang HS, Jack GA, Chen Z, Chadburn A, Ketas TJ, Francomano E, Klasse PJ, Moore JP, McDonough KA et al..  2021.  Postconvalescent SARS-CoV-2 IgG and Neutralizing Antibodies are Elevated in Individuals with Poor Metabolic Health.. J Clin Endocrinol Metab. 106(5):e2025-e2034.
Racine-Brzostek SE, Yang HS, Jack GA, Chen Z, Chadburn A, Ketas TJ, Francomano E, Klasse PJ, Moore JP, McDonough KA et al..  2021.  Postconvalescent SARS-CoV-2 IgG and Neutralizing Antibodies are Elevated in Individuals with Poor Metabolic Health.. J Clin Endocrinol Metab. 106(5):e2025-e2034.
Racine-Brzostek SE, Yang HS, Jack GA, Chen Z, Chadburn A, Ketas TJ, Francomano E, Klasse PJ, Moore JP, McDonough KA et al..  2021.  Postconvalescent SARS-CoV-2 IgG and Neutralizing Antibodies are Elevated in Individuals with Poor Metabolic Health.. J Clin Endocrinol Metab. 106(5):e2025-e2034.
Ma X, Riemann H, Gri G, Trinchieri G.  1998.  Positive and negative regulation of interleukin-12 gene expression.. Eur Cytokine Netw. 9(3 Suppl):54-64.
Müller S, Wolf AJ, Iliev ID, Berg BL, Underhill DM, Liu GY.  2015.  Poorly Cross-Linked Peptidoglycan in MRSA Due to mecA Induction Activates the Inflammasome and Exacerbates Immunopathology.. Cell Host Microbe. 18(5):604-12.
Antanasijevic A, Sewall LM, Cottrell CA, Carnathan DG, Jimenez LE, Ngo JT, Silverman JB, Groschel B, Georgeson E, Bhiman J et al..  2021.  Polyclonal antibody responses to HIV Env immunogens resolved using cryoEM.. Nat Commun. 12(1):4817.
Antanasijevic A, Sewall LM, Cottrell CA, Carnathan DG, Jimenez LE, Ngo JT, Silverman JB, Groschel B, Georgeson E, Bhiman J et al..  2021.  Polyclonal antibody responses to HIV Env immunogens resolved using cryoEM.. Nat Commun. 12(1):4817.
Beites T, O'Brien K, Tiwari D, Engelhart CA, Walters S, Andrews J, Yang H-J, Sutphen ML, Weiner DM, Dayao EK et al..  2019.  Plasticity of the Mycobacterium tuberculosis respiratory chain and its impact on tuberculosis drug development.. Nat Commun. 10(1):4970.
Sanyal S, Egée S, Bouyer G, Perrot S, Safeukui I, Bischoff E, Buffet P, Deitsch KW, Mercereau-Puijalon O, David PH et al..  2012.  Plasmodium falciparum STEVOR proteins impact erythrocyte mechanical properties.. Blood. 119(2):e1-8.
Merckx A, Nivez M-P, Bouyer G, Alano P, Langsley G, Deitsch K, Thomas S, Doerig C, Egée S.  2008.  Plasmodium falciparum regulatory subunit of cAMP-dependent PKA and anion channel conductance.. PLoS Pathog. 4(2):e19.
Coleman BI, Skillman KM, H Y Jiang R, Childs LM, Altenhofen LM, Ganter M, Leung Y, Goldowitz I, Kafsack BFC, Marti M et al..  2014.  A Plasmodium falciparum histone deacetylase regulates antigenic variation and gametocyte conversion.. Cell Host Microbe. 16(2):177-186.
Moore JP, Kuritzkes DR.  2009.  A pièce de resistance: how HIV-1 escapes small molecule CCR5 inhibitors.. Curr Opin HIV AIDS. 4(2):118-24.
Koo M-S, Manca C, Yang G, O'Brien P, Sung N, Tsenova L, Subbian S, Fallows D, Muller G, Ehrt S et al..  2011.  Phosphodiesterase 4 inhibition reduces innate immunity and improves isoniazid clearance of Mycobacterium tuberculosis in the lungs of infected mice.. PLoS One. 6(2):e17091.
Koo M-S, Manca C, Yang G, O'Brien P, Sung N, Tsenova L, Subbian S, Fallows D, Muller G, Ehrt S et al..  2011.  Phosphodiesterase 4 inhibition reduces innate immunity and improves isoniazid clearance of Mycobacterium tuberculosis in the lungs of infected mice.. PLoS One. 6(2):e17091.
Klevorn T, Brown C, Hardy CD, Cuthbert BJ, Spencer A, Jinich A, Chan L, Angala SK, Manzer J, Mendoza J et al..  2026.  A periplasmic protein complex mediates arabinofuranosyltransferase activity and intrinsic drug resistance in Mycobacterium tuberculosis.. Sci Adv. 12(14):eaec5100.
Klevorn T, Brown C, Hardy CD, Cuthbert BJ, Spencer A, Jinich A, Chan L, Angala SK, Manzer J, Mendoza J et al..  2026.  A periplasmic protein complex mediates arabinofuranosyltransferase activity and intrinsic drug resistance in Mycobacterium tuberculosis.. Sci Adv. 12(14):eaec5100.
Zhang L, Kent JE, Whitaker M, Young DC, Herrmann D, Aleshin AE, Ko Y-H, Cingolani G, Saad JS, D Moody B et al..  2022.  A periplasmic cinched protein is required for siderophore secretion and virulence of Mycobacterium tuberculosis.. Nat Commun. 13(1):2255.
Zhang L, Kent JE, Whitaker M, Young DC, Herrmann D, Aleshin AE, Ko Y-H, Cingolani G, Saad JS, D Moody B et al..  2022.  A periplasmic cinched protein is required for siderophore secretion and virulence of Mycobacterium tuberculosis.. Nat Commun. 13(1):2255.
Saito K, Mishra S, Warrier T, Cicchetti N, Mi J, Weber E, Jiang X, Roberts J, Gouzy A, Kaplan E et al..  2021.  Oxidative damage and delayed replication allow viable Mycobacterium tuberculosis to go undetected.. Sci Transl Med. 13(621):eabg2612.
Saito K, Mishra S, Warrier T, Cicchetti N, Mi J, Weber E, Jiang X, Roberts J, Gouzy A, Kaplan E et al..  2021.  Oxidative damage and delayed replication allow viable Mycobacterium tuberculosis to go undetected.. Sci Transl Med. 13(621):eabg2612.