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Found 456 results
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2023
Green SR, Wilson C, Eadsforth TC, Punekar AS, Tamaki FK, Wood G, Caldwell N, Forte B, Norcross NR, Kiczun M et al..  2023.  Identification and Optimization of Novel Inhibitors of the Polyketide Synthase 13 Thioesterase Domain with Antitubercular Activity.. J Med Chem. 66(22):15380-15408.
Coloma J, Gonzalez-Rodriguez N, Balaguer FA, Gmurczyk K, Aicart-Ramos C, Nuero ÓM, Luque-Ortega JRomán, Calugaru K, Lue NF, Moreno-Herrero F et al..  2023.  Molecular architecture and oligomerization of Candida glabrata Cdc13 underpin its telomeric DNA-binding and unfolding activity.. Nucleic Acids Res. 51(2):668-686.
Coloma J, Gonzalez-Rodriguez N, Balaguer FA, Gmurczyk K, Aicart-Ramos C, Nuero ÓM, Luque-Ortega JRomán, Calugaru K, Lue NF, Moreno-Herrero F et al..  2023.  Molecular architecture and oligomerization of Candida glabrata Cdc13 underpin its telomeric DNA-binding and unfolding activity.. Nucleic Acids Res. 51(2):668-686.
Ottavi S, Li K, Cacioppo JG, Perkowski AJ, Ramesh R, Gold BS, Ling Y, Roberts J, Singh A, Zhang D et al..  2023.  Mycobacterium tuberculosis PptT Inhibitors Based on Heterocyclic Replacements of Amidinoureas.. ACS Med Chem Lett. 14(7):970-976.
Harris CT, Tong X, Campelo R, Marreiros IM, Vanheer LN, Nahiyaan N, Zuzarte-Luís VA, Deitsch KW, Mota MM, Rhee KY et al..  2023.  Sexual differentiation in human malaria parasites is regulated by competition between phospholipid metabolism and histone methylation.. Nat Microbiol. 8(7):1280-1292.
Zhang H, Ginn J, Zhan W, Leung A, Liu YJ, Toita A, Okamoto R, Wong T-T, Imaeda T, Hara R et al..  2023.  Structure-Activity Relationship Studies of Antimalarial Plasmodium Proteasome Inhibitors─Part II.. J Med Chem. 66(2):1484-1508.
Zhang H, Ginn J, Zhan W, Leung A, Liu YJ, Toita A, Okamoto R, Wong T-T, Imaeda T, Hara R et al..  2023.  Structure-Activity Relationship Studies of Antimalarial Plasmodium Proteasome Inhibitors─Part II.. J Med Chem. 66(2):1484-1508.
Hsu H-C, Li D, Zhan W, Ye J, Liu YJing, Leung A, Qin J, Crespo B, Gamo F-J, Zhang H et al..  2023.  Structures revealing mechanisms of resistance and collateral sensitivity of Plasmodium falciparum to proteasome inhibitors.. Nat Commun. 14(1):8302.
Hsu H-C, Li D, Zhan W, Ye J, Liu YJing, Leung A, Qin J, Crespo B, Gamo F-J, Zhang H et al..  2023.  Structures revealing mechanisms of resistance and collateral sensitivity of Plasmodium falciparum to proteasome inhibitors.. Nat Commun. 14(1):8302.
2022
Heydarchi B, Fong DS, Gao H, Salazar-Quiroz NA, Edwards JM, Gonelli CA, Grimley S, Aktepe TE, Mackenzie C, Wales WJ et al..  2022.  Broad and ultra-potent cross-clade neutralization of HIV-1 by a vaccine-induced CD4 binding site bovine antibody.. Cell Rep Med. 3(5):100635.
Moretti J, Jia B, Hutchins Z, Roy S, Yip H, Wu J, Shan M, Jaffrey SR, Coers J, J Blander M.  2022.  Caspase-11 interaction with NLRP3 potentiates the noncanonical activation of the NLRP3 inflammasome.. Nat Immunol. 23(5):705-717.
Du Y, Kioon MDominique, Laurent P, Chaudhary V, Pierides M, Yang C, Oliver D, Ivashkiv LB, Barrat FJ.  2022.  Chemokines form nanoparticles with DNA and can superinduce TLR-driven immune inflammation.. J Exp Med. 219(7)
Chaudhary V, Kioon MDominique, Hwang S-M, Mishra B, Lakin K, Kirou KA, Zhang-Sun J, R Wiseman L, Spiera RF, Crow MK et al..  2022.  Chronic activation of pDCs in autoimmunity is linked to dysregulated ER stress and metabolic responses.. J Exp Med. 219(11)
Chaudhary V, Kioon MDominique, Hwang S-M, Mishra B, Lakin K, Kirou KA, Zhang-Sun J, R Wiseman L, Spiera RF, Crow MK et al..  2022.  Chronic activation of pDCs in autoimmunity is linked to dysregulated ER stress and metabolic responses.. J Exp Med. 219(11)
Chaudhary V, Kioon MDominique, Hwang S-M, Mishra B, Lakin K, Kirou KA, Zhang-Sun J, R Wiseman L, Spiera RF, Crow MK et al..  2022.  Chronic activation of pDCs in autoimmunity is linked to dysregulated ER stress and metabolic responses.. J Exp Med. 219(11)
Yu EYoung, Cheung N-KV, Lue NF.  2022.  Connecting telomere maintenance and regulation to the developmental origin and differentiation states of neuroblastoma tumor cells.. J Hematol Oncol. 15(1):117.
Li S, Poulton NC, Chang JS, Azadian ZA, DeJesus MA, Ruecker N, Zimmerman MD, Eckartt KA, Bosch B, Engelhart CA et al..  2022.  CRISPRi chemical genetics and comparative genomics identify genes mediating drug potency in Mycobacterium tuberculosis.. Nat Microbiol. 7(6):766-779.
Schorcht A, Cottrell CA, Pugach P, Ringe RP, Han AX, Allen JD, van den Kerkhof TLGM, Seabright GE, Schermer EE, Ketas TJ et al..  2022.  The Glycan Hole Area of HIV-1 Envelope Trimers Contributes Prominently to the Induction of Autologous Neutralization.. J Virol. 96(1):e0155221.
Schorcht A, Cottrell CA, Pugach P, Ringe RP, Han AX, Allen JD, van den Kerkhof TLGM, Seabright GE, Schermer EE, Ketas TJ et al..  2022.  The Glycan Hole Area of HIV-1 Envelope Trimers Contributes Prominently to the Induction of Autologous Neutralization.. J Virol. 96(1):e0155221.
Gold B, Zhang J, Quezada LLopez, Roberts J, Ling Y, Wood M, Shinwari W, Goullieux L, Roubert C, Fraisse L et al..  2022.  Identification of β-Lactams Active against Mycobacterium tuberculosis by a Consortium of Pharmaceutical Companies and Academic Institutions.. ACS Infect Dis. 8(3):557-573.
Green SR, Davis SH, Damerow S, Engelhart CA, Mathieson M, Baragaña B, Robinson DA, Tamjar J, Dawson A, Tamaki FK et al..  2022.  Lysyl-tRNA synthetase, a target for urgently needed M. tuberculosis drugs.. Nat Commun. 13(1):5992.
Green SR, Davis SH, Damerow S, Engelhart CA, Mathieson M, Baragaña B, Robinson DA, Tamjar J, Dawson A, Tamaki FK et al..  2022.  Lysyl-tRNA synthetase, a target for urgently needed M. tuberculosis drugs.. Nat Commun. 13(1):5992.
Green SR, Davis SH, Damerow S, Engelhart CA, Mathieson M, Baragaña B, Robinson DA, Tamjar J, Dawson A, Tamaki FK et al..  2022.  Lysyl-tRNA synthetase, a target for urgently needed M. tuberculosis drugs.. Nat Commun. 13(1):5992.
Green SR, Davis SH, Damerow S, Engelhart CA, Mathieson M, Baragaña B, Robinson DA, Tamjar J, Dawson A, Tamaki FK et al..  2022.  Lysyl-tRNA synthetase, a target for urgently needed M. tuberculosis drugs.. Nat Commun. 13(1):5992.
Green SR, Davis SH, Damerow S, Engelhart CA, Mathieson M, Baragaña B, Robinson DA, Tamjar J, Dawson A, Tamaki FK et al..  2022.  Lysyl-tRNA synthetase, a target for urgently needed M. tuberculosis drugs.. Nat Commun. 13(1):5992.