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Found 161 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.
Lupoli TJ, Fay A, Adura C, Glickman MS, Nathan C.  2016.  Reconstitution of a Mycobacterium tuberculosis proteostasis network highlights essential cofactor interactions with chaperone DnaK.. Proc Natl Acad Sci U S A. 113(49):E7947-E7956.
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.
2015
Frykman PK, Nordenskjöld A, Kawaguchi A, Hui TT, Granström AL, Cheng Z, Tang J, Underhill DM, Iliev ID, Funari VA et al..  2015.  Characterization of Bacterial and Fungal Microbiome in Children with Hirschsprung Disease with and without a History of Enterocolitis: A Multicenter Study.. PLoS One. 10(4):e0124172.
Nathan C.  2015.  Cooperative development of antimicrobials: looking back to look ahead.. Nat Rev Microbiol. 13(10):651-7.
Maksymiuk C, Balakrishnan A, Bryk R, Rhee KY, Nathan C.  2015.  E1 of α-ketoglutarate dehydrogenase defends Mycobacterium tuberculosis against glutamate anaplerosis and nitroxidative stress.. Proc Natl Acad Sci U S A. 112(43):E5834-43.
Zhao N, Sun M, Burns-Huang K, Jiang X, Ling Y, Darby C, Ehrt S, Liu G, Nathan C.  2015.  Identification of Rv3852 as an Agrimophol-Binding Protein in Mycobacterium tuberculosis.. PLoS One. 10(5):e0126211.
Vaubourgeix J, Lin G, Dhar N, Chenouard N, Jiang X, Botella H, Lupoli T, Mariani O, Yang G, Ouerfelli O et al..  2015.  Stressed mycobacteria use the chaperone ClpB to sequester irreversibly oxidized proteins asymmetrically within and between cells.. Cell Host Microbe. 17(2):178-90.
Park SWoong, Casalena DE, Wilson DJ, Dai R, Nag PP, Liu F, Boyce JP, Bittker JA, Schreiber SL, Finzel BC et al..  2015.  Target-based identification of whole-cell active inhibitors of biotin biosynthesis in Mycobacterium tuberculosis.. Chem Biol. 22(1):76-86.
Zhao N, Darby CM, Small J, Bachovchin DA, Jiang X, Burns-Huang KE, Botella H, Ehrt S, Boger DL, Anderson ED et al..  2015.  Target-based screen against a periplasmic serine protease that regulates intrabacterial pH homeostasis in Mycobacterium tuberculosis.. ACS Chem Biol. 10(2):364-71.
Bockman MR, Kalinda AS, Petrelli R, De la Mora-Rey T, Tiwari D, Liu F, Dawadi S, Nandakumar M, Rhee KY, Schnappinger D et al..  2015.  Targeting Mycobacterium tuberculosis Biotin Protein Ligase (MtBPL) with Nucleoside-Based Bisubstrate Adenylation Inhibitors.. J Med Chem. 58(18):7349-7369.
Nathan C, Barry CE.  2015.  TB drug development: immunology at the table.. Immunol Rev. 264(1):308-18.
Nathan C.  2015.  What can immunology contribute to the control of the world's leading cause of death from bacterial infection? Immunol Rev. 264(1):2-5.
2014
Nathan C, Cars O.  2014.  Antibiotic resistance--problems, progress, and prospects.. N Engl J Med. 371(19):1761-3.
Osborne LC, Monticelli LA, Nice TJ, Sutherland TE, Siracusa MC, Hepworth MR, Tomov VT, Kobuley D, Tran SV, Bittinger K et al..  2014.  Coinfection. Virus-helminth coinfection reveals a microbiota-independent mechanism of immunomodulation.. Science. 345(6196):578-82.
Gouzy A, Larrouy-Maumus G, Bottai D, Levillain F, Dumas A, Wallach JB, Caire-Brandli I, de Chastellier C, Di Wu T-, Poincloux R et al..  2014.  Mycobacterium tuberculosis exploits asparagine to assimilate nitrogen and resist acid stress during infection.. PLoS Pathog. 10(2):e1003928.
Danilchanka O, Sun J, Pavlenok M, Maueröder C, Speer A, Siroy A, Marrero J, Trujillo C, Mayhew DL, Doornbos KS et al..  2014.  An outer membrane channel protein of Mycobacterium tuberculosis with exotoxin activity.. Proc Natl Acad Sci U S A. 111(18):6750-5.
2013
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.
Nathan C.  2013.  A journey in science: promise, purpose, privilege.. Mol Med. 19(1):305-13.
Lin G, Chidawanyika T, Tsu C, Warrier T, Vaubourgeix J, Blackburn C, Gigstad K, Sintchak M, Dick L, Nathan C.  2013.  N,C-Capped dipeptides with selectivity for mycobacterial proteasome over human proteasomes: role of S3 and S1 binding pockets.. J Am Chem Soc. 135(27):9968-71.
Noti M, Wojno EDTait, Kim BS, Siracusa MC, Giacomin PR, Nair MG, Benitez AJ, Ruymann KR, Muir AB, Hill DA et al..  2013.  Thymic stromal lymphopoietin-elicited basophil responses promote eosinophilic esophagitis.. Nat Med. 19(8):1005-13.
Noti M, Wojno EDTait, Kim BS, Siracusa MC, Giacomin PR, Nair MG, Benitez AJ, Ruymann KR, Muir AB, Hill DA et al..  2013.  Thymic stromal lymphopoietin-elicited basophil responses promote eosinophilic esophagitis.. Nat Med. 19(8):1005-13.
Kim BS, Siracusa MC, Saenz SA, Noti M, Monticelli LA, Sonnenberg GF, Hepworth MR, Van Voorhees AS, Comeau MR, Artis D.  2013.  TSLP elicits IL-33-independent innate lymphoid cell responses to promote skin inflammation.. Sci Transl Med. 5(170):170ra16.
Darby CM, Ingólfsson HI, Jiang X, Shen C, Sun M, Zhao N, Burns K, Liu G, Ehrt S, J Warren D et al..  2013.  Whole cell screen for inhibitors of pH homeostasis in Mycobacterium tuberculosis.. PLoS One. 8(7):e68942.
2012
Ginsberg M, James D, Ding B-S, Nolan D, Geng F, Butler JM, Schachterle W, Pulijaal VR, Mathew S, Chasen ST et al..  2012.  Efficient direct reprogramming of mature amniotic cells into endothelial cells by ETS factors and TGFβ suppression.. Cell. 151(3):559-75.