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Found 188 results
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2019
Quezada LLopez, Silve S, Kelinske M, Liba A, Gonzalez CDiaz, Kotev M, Goullieux L, Sans S, Roubert C, Lagrange S et al..  2019.  Bactericidal Disruption of Magnesium Metallostasis in Mycobacterium tuberculosis Is Counteracted by Mutations in the Metal Ion Transporter CorA.. mBio. 10(4)
Ringe RP, Pugach P, Cottrell CA, LaBranche CC, Seabright GE, Ketas TJ, Ozorowski G, Kumar S, Schorcht A, van Gils MJ et al..  2019.  Closing and Opening Holes in the Glycan Shield of HIV-1 Envelope Glycoprotein SOSIP Trimers Can Redirect the Neutralizing Antibody Response to the Newly Unmasked Epitopes.. J Virol. 93(4)
Wu J, Mu R, Sun M, Zhao N, Pan M, Li H, Dong Y, Sun Z, Bai J, Hu M et al..  2019.  Derivatives of Natural Product Agrimophol as Disruptors of Intrabacterial pH Homeostasis in .. ACS Infect Dis. 5(7):1087-1104.
Quezada LLopez, Li K, McDonald SL, Nguyen Q, Perkowski AJ, Pharr CW, Gold B, Roberts J, McAulay K, Saito K et al..  2019.  Dual-Pharmacophore Pyrithione-Containing Cephalosporins Kill Both Replicating and Nonreplicating .. ACS Infect Dis. 5(8):1433-1445.
Quezada LLopez, Li K, McDonald SL, Nguyen Q, Perkowski AJ, Pharr CW, Gold B, Roberts J, McAulay K, Saito K et al..  2019.  Dual-Pharmacophore Pyrithione-Containing Cephalosporins Kill Both Replicating and Nonreplicating .. ACS Infect Dis. 5(8):1433-1445.
Zimmerman M, McDonald SL, Ho-Liang H-P, Porubsky P, Nguyen Q, Pharr CW, Perkowski AJ, Smith R, Schoenen FJ, Gold BS et al..  2019.  Effect of C-2 substitution on the stability of non-traditional cephalosporins in mouse plasma.. J Antibiot (Tokyo). 72(6):469-475.
Zimmerman M, McDonald SL, Ho-Liang H-P, Porubsky P, Nguyen Q, Pharr CW, Perkowski AJ, Smith R, Schoenen FJ, Gold BS et al..  2019.  Effect of C-2 substitution on the stability of non-traditional cephalosporins in mouse plasma.. J Antibiot (Tokyo). 72(6):469-475.
Zimmerman M, McDonald SL, Ho-Liang H-P, Porubsky P, Nguyen Q, Pharr CW, Perkowski AJ, Smith R, Schoenen FJ, Gold BS et al..  2019.  Effect of C-2 substitution on the stability of non-traditional cephalosporins in mouse plasma.. J Antibiot (Tokyo). 72(6):469-475.
Wang C, Li Y, Chu C-M, Zhang X-M, Ma J, Huang H, Wang Y-N, Hong T-Y, Zhang J, Pan X-W et al..  2019.  Gankyrin is a novel biomarker for disease progression and prognosis of patients with renal cell carcinoma.. EBioMedicine. 39:255-264.
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.
Wei F, Jiang Z, Sun H, Pu J, Sun Y, Wang M, Tong Q, Bi Y, Ma X, Gao GFu et al..  2019.  Induction of PGRN by influenza virus inhibits the antiviral immune responses through downregulation of type I interferons signaling.. PLoS Pathog. 15(10):e1008062.
Nathan CF, Nussenzweig MC, Pulvirenti T.  2019.  JEM Editorial Board: Expanding on the basis of cancer.. J Exp Med. 216(8):1725.
Johnson EO, LaVerriere E, Office E, Stanley M, Meyer E, Kawate T, Gomez JE, Audette RE, Bandyopadhyay N, Betancourt N et al..  2019.  Large-scale chemical-genetics yields new M. tuberculosis inhibitor classes.. Nature. 571(7763):72-78.
Johnson EO, LaVerriere E, Office E, Stanley M, Meyer E, Kawate T, Gomez JE, Audette RE, Bandyopadhyay N, Betancourt N et al..  2019.  Large-scale chemical-genetics yields new M. tuberculosis inhibitor classes.. Nature. 571(7763):72-78.
Johnson EO, LaVerriere E, Office E, Stanley M, Meyer E, Kawate T, Gomez JE, Audette RE, Bandyopadhyay N, Betancourt N et al..  2019.  Large-scale chemical-genetics yields new M. tuberculosis inhibitor classes.. Nature. 571(7763):72-78.
Johnson EO, LaVerriere E, Office E, Stanley M, Meyer E, Kawate T, Gomez JE, Audette RE, Bandyopadhyay N, Betancourt N et al..  2019.  Large-scale chemical-genetics yields new M. tuberculosis inhibitor classes.. Nature. 571(7763):72-78.
Buter J, Cheng T-Y, Ghanem M, Grootemaat AE, Raman S, Feng X, Plantijn AR, Ennis T, Wang J, Cotton RN et al..  2019.  Mycobacterium tuberculosis releases an antacid that remodels phagosomes.. Nat Chem Biol. 15(9):889-899.
Freire DMendes, Gutierrez C, Garza-Garcia A, Grabowska AD, Sala AJ, Ariyachaokun K, Panikova T, Beckham KSH, Colom A, Pogenberg V et al..  2019.  An NAD Phosphorylase Toxin Triggers Mycobacterium tuberculosis Cell Death.. Mol Cell. 73(6):1282-1291.e8.
Freire DMendes, Gutierrez C, Garza-Garcia A, Grabowska AD, Sala AJ, Ariyachaokun K, Panikova T, Beckham KSH, Colom A, Pogenberg V et al..  2019.  An NAD Phosphorylase Toxin Triggers Mycobacterium tuberculosis Cell Death.. Mol Cell. 73(6):1282-1291.e8.
Freire DMendes, Gutierrez C, Garza-Garcia A, Grabowska AD, Sala AJ, Ariyachaokun K, Panikova T, Beckham KSH, Colom A, Pogenberg V et al..  2019.  An NAD Phosphorylase Toxin Triggers Mycobacterium tuberculosis Cell Death.. Mol Cell. 73(6):1282-1291.e8.
Freire DMendes, Gutierrez C, Garza-Garcia A, Grabowska AD, Sala AJ, Ariyachaokun K, Panikova T, Beckham KSH, Colom A, Pogenberg V et al..  2019.  An NAD Phosphorylase Toxin Triggers Mycobacterium tuberculosis Cell Death.. Mol Cell. 73(6):1282-1291.e8.
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.