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Molecular and Biochemical Parasitology|July 24, 2021
2,3-Diphenyl-2,3-dihydro-4H-1,3-thiaza-4-one heterocycles inhibit growth and block completion of cytokinesis in kinetoplastid parasitesMadeline F Malfara, Lee J Silverberg, John DiMaio, et al.Experimental Parasitology|May 18, 2024
Genetic modification of the bee parasite Crithidia bombi for improved visualization and protein localizationBlyssalyn V Bieber, Sarah G Lockett, Sonja K Glasser, et al.Eukaryotic Cell|January 18, 2011
Depletion of mitochondrial acyl carrier protein in bloodstream-form Trypanosoma brucei causes a kinetoplast segregation defectApril M Clayton, Jennifer L Guler, Megan L Povelones, et al.Plos Neglected Tropical Diseases|July 30, 2019
Dramatic changes in gene expression in different forms of Crithidia fasciculata reveal potential mechanisms for insect-specific adhesion in kinetoplastid parasitesJohn N Filosa, Corbett T Berry, Gordon Ruthel, et al.Proceedings of the National Academy of Sciences of the United States of America|July 31, 2019
Dynamic colocalization of 2 simultaneously active <i>VSG</i> expression sites within a single expression-site body in <i>Trypanosoma brucei</i>James Budzak, Louise E Kerry, Aris Aristodemou, et al.Msphere|September 24, 2024
Adhesion of <i>Crithidia fasciculata</i> promotes a rapid change in developmental fate driven by cAMP signalingShane Denecke, Madeline F Malfara, Kelly R Hodges, et al.Molecules (Basel, Switzerland)|October 23, 2021
T3P-Promoted Synthesis of a Series of 2-Aryl-3-phenyl-2,3-dihydro-4<i>H</i>-pyrido[3,2-<i>e</i>][1,3]thiazin-4-ones and Their Activity against the Kinetoplastid Parasite <i>Trypanosoma brucei</i>Lee J Silverberg, Tapas K Mal, Carlos N Pacheco, et al.Pageof 2