Flaherty Daniel P, Harris Michael T, Schroeder Chad E, Khan Haaris, Kahney Elizabeth W, Hackler Amber L, Patrick Stephen L, Weiner Warren S, Aubé Jeffrey, Sharlow Elizabeth R, Morris James C, Golden Jennifer E
University of Kansas Specialized Chemistry Center, University of Kansas, Lawrence, KS, 66049, USA.
Present Address: Department of Medicinal Chemistry and Molecular Pharmacology, Purdue University, 575 West Stadium Avenue, West Lafayette, IN, 47907, USA.
ChemMedChem. 2017 Dec 7;12(23):1994-2005. doi: 10.1002/cmdc.201700592. Epub 2017 Nov 16.
Kinetoplastid-based infections are neglected diseases that represent a significant human health issue. Chemotherapeutic options are limited due to toxicity, parasite susceptibility, and poor patient compliance. In response, we studied a molecular-target-directed approach involving intervention of hexokinase activity-a pivotal enzyme in parasite metabolism. A benzamidobenzoic acid hit with modest biochemical inhibition of Trypanosoma brucei hexokinase 1 (TbHK1, IC =9.1 μm), low mammalian cytotoxicity (IMR90 cells, EC >25 μm), and no appreciable activity on whole bloodstream-form (BSF) parasites was optimized to afford a probe with improved TbHK1 potency and, significantly, efficacy against whole BSF parasites (TbHK1, IC =0.28 μm; BSF, ED =1.9 μm). Compounds in this series also inhibited the hexokinase enzyme from Leishmania major (LmHK1), albeit with less potency than toward TbHK1, suggesting that inhibition of the glycolytic pathway may be a promising opportunity to target multiple disease-causing trypanosomatid protozoa.
基于动基体的感染是被忽视的疾病,是重大的人类健康问题。由于毒性、寄生虫易感性和患者依从性差,化疗选择有限。作为回应,我们研究了一种分子靶点导向的方法,该方法涉及干预己糖激酶活性——寄生虫代谢中的一种关键酶。一种对布氏锥虫己糖激酶1(TbHK1,IC = 9.1μm)具有适度生化抑制作用、低哺乳动物细胞毒性(IMR90细胞,EC > 25μm)且对全血流形式(BSF)寄生虫无明显活性的苯甲酰胺苯甲酸被优化,以得到一种对TbHK1效力更高且对全BSF寄生虫具有显著疗效的探针(TbHK1,IC = 0.28μm;BSF,ED = 1.9μm)。该系列化合物也抑制了来自硕大利什曼原虫的己糖激酶(LmHK1),尽管效力低于对TbHK1的抑制,这表明抑制糖酵解途径可能是针对多种致病锥虫原生动物的一个有前景的机会。