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Full-Text Articles in Life Sciences
A Potent Antimalarial Benzoxaborole Targets A Plasmodium Falciparum Cleavage And Polyadenylation Specificity Factor Homologue., Ebere Sonoiki, Caroline L. Ng, Marcus C. S. Lee, Denghui Guo, Yong-Kang Zhang, Yasheen Zhou, M. R. K. Alley, Vida Ahyong, Laura M. Sanz, Maria Jose Lafuente-Monasterio, Chen Dong, Patrick G. Schupp, Jiri Gut, Jenny Legac, Roland A. Cooper, Francisco-Javier Gamo, Joseph Derisi, Yvonne R. Freund, David A. Fidock, Philip J. Rosenthal
A Potent Antimalarial Benzoxaborole Targets A Plasmodium Falciparum Cleavage And Polyadenylation Specificity Factor Homologue., Ebere Sonoiki, Caroline L. Ng, Marcus C. S. Lee, Denghui Guo, Yong-Kang Zhang, Yasheen Zhou, M. R. K. Alley, Vida Ahyong, Laura M. Sanz, Maria Jose Lafuente-Monasterio, Chen Dong, Patrick G. Schupp, Jiri Gut, Jenny Legac, Roland A. Cooper, Francisco-Javier Gamo, Joseph Derisi, Yvonne R. Freund, David A. Fidock, Philip J. Rosenthal
Natural Sciences and Mathematics | Faculty Scholarship
Benzoxaboroles are effective against bacterial, fungal and protozoan pathogens. We report potent activity of the benzoxaborole AN3661 against Plasmodium falciparum laboratory-adapted strains (mean IC50 32 nM), Ugandan field isolates (mean ex vivo IC50 64 nM), and murine P. berghei and P. falciparum infections (day 4 ED90 0.34 and 0.57 mg kg-1, respectively). Multiple P. falciparum lines selected in vitro for resistance to AN3661 harboured point mutations in pfcpsf3, which encodes a homologue of mammalian cleavage and polyadenylation specificity factor subunit 3 (CPSF-73 or CPSF3). CRISPR-Cas9-mediated introduction of pfcpsf3 mutations into parental lines recapitulated AN3661 resistance. PfCPSF3 homology models placed these …
Design, Synthesis, And Evaluation Of 10-N-Substituted Acridones As Novel Chemosensitizers In Plasmodium Falciparum, Jane X. Kelly, Martin J. Smilkstein, Roland A. Cooper, Kristin D. Lane, Robert A. Johnson, Aaron Janowsky, Rozalia A. Dodean, Rolf Winter, Michael Riscoe
Design, Synthesis, And Evaluation Of 10-N-Substituted Acridones As Novel Chemosensitizers In Plasmodium Falciparum, Jane X. Kelly, Martin J. Smilkstein, Roland A. Cooper, Kristin D. Lane, Robert A. Johnson, Aaron Janowsky, Rozalia A. Dodean, Rolf Winter, Michael Riscoe
Collected Faculty and Staff Scholarship
A series of novel 10-N-substituted acridones, bearing alkyl side chains with tertiary amine groups at the terminal position, were designed, synthesized, and evaluated for the ability to enhance the potency of quinoline drugs against multidrug-resistant (MDR) Plasmodium falciparum malaria parasites. A number of acridone derivatives, with side chains bridged three or more carbon atoms apart between the ring nitrogen and terminal nitrogen, demonstrated chloroquine (CQ)-chemosensitizing activity against the MDR strain of P. falciparum (Dd2). Isobologram analysis revealed that selected candidates demonstrated significant synergy with CQ in the CQ-resistant (CQR) parasite Dd2 but only additive (or indifferent) interaction in the CQ-sensitive …