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Found 220 results
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2016
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Van Voorhis WC, Adams JH, Adelfio R, Ahyong V, Akabas MH, Alano P, Alday A, Resto YAlemán, Alsibaee A, Alzualde A et al..  2016.  Open Source Drug Discovery with the Malaria Box Compound Collection for Neglected Diseases and Beyond.. PLoS Pathog. 12(7):e1005763.
Yan W, Ding A, Kim H-J, Zheng H, Wei F, Ma X.  2016.  Progranulin Controls Sepsis via C/EBPα-Regulated Il10 Transcription and Ubiquitin Ligase/Proteasome-Mediated Protein Degradation.. J Immunol. 197(8):3393-3405.
Li W, Obregón-Henao A, Wallach JB, E North J, Lee RE, Gonzalez-Juarrero M, Schnappinger D, Jackson M.  2016.  Therapeutic Potential of the Mycobacterium tuberculosis Mycolic Acid Transporter, MmpL3.. Antimicrob Agents Chemother. 60(9):5198-207.
2017
Xu W, DeJesus MA, Rücker N, Engelhart CA, Wright MG, Healy C, Lin K, Wang R, Park SWoong, Ioerger TR et al..  2017.  Chemical Genetic Interaction Profiling Reveals Determinants of Intrinsic Antibiotic Resistance in Mycobacterium tuberculosis.. Antimicrob Agents Chemother. 61(12)
Xu W, DeJesus MA, Rücker N, Engelhart CA, Wright MG, Healy C, Lin K, Wang R, Park SWoong, Ioerger TR et al..  2017.  Chemical Genetic Interaction Profiling Reveals Determinants of Intrinsic Antibiotic Resistance in Mycobacterium tuberculosis.. Antimicrob Agents Chemother. 61(12)
Zhang L, Adileh M, Martin MLaura, Klingler S, White J, Ma X, Howe LR, Brown AMC, Kolesnick R.  2017.  Establishing estrogen-responsive mouse mammary organoids from single Lgr5 cells.. Cell Signal. 29:41-51.
Puckett S, Trujillo C, Wang Z, Eoh H, Ioerger TR, Krieger I, Sacchettini J, Schnappinger D, Rhee KY, Ehrt S.  2017.  Glyoxylate detoxification is an essential function of malate synthase required for carbon assimilation in Mycobacterium tuberculosis.. Proc Natl Acad Sci U S A. 114(11):E2225-E2232.
Zhao Q, Du Q, Wei F, Xie J, Ma X.  2017.  An Infectious Disease-Associated Il12b Polymorphism Regulates IL-12/23 p40 Transcription Involving Poly(ADP-Ribose) Polymerase 1.. J Immunol. 198(7):2935-2942.
Janovitz T, Wong S, Young NS, Oliveira T, Falck-Pedersen E.  2017.  Parvovirus B19 integration into human CD36+ erythroid progenitor cells.. Virology. 511:40-48.
Saito K, Warrier T, Somersan-Karakaya S, Kaminski L, Mi J, Jiang X, Park S, Shigyo K, Gold B, Roberts J et al..  2017.  Rifamycin action on RNA polymerase in antibiotic-tolerant Mycobacterium tuberculosis results in differentially detectable populations.. Proc Natl Acad Sci U S A. 114(24):E4832-E4840.
Saito K, Warrier T, Somersan-Karakaya S, Kaminski L, Mi J, Jiang X, Park S, Shigyo K, Gold B, Roberts J et al..  2017.  Rifamycin action on RNA polymerase in antibiotic-tolerant Mycobacterium tuberculosis results in differentially detectable populations.. Proc Natl Acad Sci U S A. 114(24):E4832-E4840.
2018
Kirkman LA, Zhan W, Visone J, Dziedziech A, Singh PK, Fan H, Tong X, Bruzual I, Hara R, Kawasaki M et al..  2018.  Antimalarial proteasome inhibitor reveals collateral sensitivity from intersubunit interactions and fitness cost of resistance.. Proc Natl Acad Sci U S A. 115(29):E6863-E6870.
Dey AK, Cupo A, Ozorowski G, Sharma VK, Behrens A-J, Go EP, Ketas TJ, Yasmeen A, Klasse PJ, Sayeed E et al..  2018.  cGMP production and analysis of BG505 SOSIP.664, an extensively glycosylated, trimeric HIV-1 envelope glycoprotein vaccine candidate.. Biotechnol Bioeng. 115(4):885-899.
Dey AK, Cupo A, Ozorowski G, Sharma VK, Behrens A-J, Go EP, Ketas TJ, Yasmeen A, Klasse PJ, Sayeed E et al..  2018.  cGMP production and analysis of BG505 SOSIP.664, an extensively glycosylated, trimeric HIV-1 envelope glycoprotein vaccine candidate.. Biotechnol Bioeng. 115(4):885-899.
McAulay K, Saito K, Warrier T, Walsh KFrances, Mathurin LDaniel, Royal-Mardi G, Lee MHee, Ocheretina O, Pape JWilliam, Fitzgerald DW et al..  2018.  Differentially Detectable Mycobacterium tuberculosis Cells in Sputum from Treatment-Naive Subjects in Haiti and Their Proportionate Increase after Initiation of Treatment.. mBio. 9(6)
McAulay K, Saito K, Warrier T, Walsh KFrances, Mathurin LDaniel, Royal-Mardi G, Lee MHee, Ocheretina O, Pape JWilliam, Fitzgerald DW et al..  2018.  Differentially Detectable Mycobacterium tuberculosis Cells in Sputum from Treatment-Naive Subjects in Haiti and Their Proportionate Increase after Initiation of Treatment.. mBio. 9(6)
Oh S, Park Y, Engelhart CA, Wallach JB, Schnappinger D, Arora K, Manikkam M, Gac B, Wang H, Murgolo N et al..  2018.  Discovery and Structure-Activity-Relationship Study of N-Alkyl-5-hydroxypyrimidinone Carboxamides as Novel Antitubercular Agents Targeting Decaprenylphosphoryl-β-d-ribose 2'-Oxidase.. J Med Chem. 61(22):9952-9965.
Oh S, Park Y, Engelhart CA, Wallach JB, Schnappinger D, Arora K, Manikkam M, Gac B, Wang H, Murgolo N et al..  2018.  Discovery and Structure-Activity-Relationship Study of N-Alkyl-5-hydroxypyrimidinone Carboxamides as Novel Antitubercular Agents Targeting Decaprenylphosphoryl-β-d-ribose 2'-Oxidase.. J Med Chem. 61(22):9952-9965.