Ohkanda Junko, Buckner Frederick S, Lockman Jeffrey W, Yokoyama Kohei, Carrico Dora, Eastman Richard, de Luca-Fradley Kate, Davies Wendy, Croft Simon L, Van Voorhis Wesley C, Gelb Michael H, Sebti Saïd M, Hamilton Andrew D
Department of Chemistry, Yale University, PO Box 208107, New Haven, Connecticut 06520, USA.
J Med Chem. 2004 Jan 15;47(2):432-45. doi: 10.1021/jm030236o.
On the basis of the structure of the CVIM tetrapeptide substrate of mammalian protein farnesyltransferase, a series of imidazole-containing peptidomimetics was designed and synthesized, and their inhibition activity against Trypanosoma brucei protein farnesyltransferase (TbPFT) was evaluated. Peptidomimetics where the 5-position of the imidazole ring was linked to the hydrophobic scaffold showed over 70% inhibition activity at 50 nM in the enzyme assay, whereas the corresponding C-4 regioisomers were less potent. The ester prodrug 23 was found to be a potent inhibitor against cultured Trypanosoma brucei brucei and Trypanosoma brucei rhodesiense cells with ED(50) values of 0.025 and 0.0026 microM, respectively. Furthermore, introducing a second imidazole group into 23 led to 31, which showed the highest inhibition activity against the parasite with an ED(50) of 0.0015 microM. The potency of the TbPFT inhibitors and the cytotoxicity of the corresponding esters to T. brucei cells were shown to be highly correlated. These studies validate TbPFT as a target for the development of novel therapeutics against African sleeping sickness.
基于哺乳动物蛋白法尼基转移酶CVIM四肽底物的结构,设计并合成了一系列含咪唑的拟肽,并评估了它们对布氏锥虫蛋白法尼基转移酶(TbPFT)的抑制活性。在酶分析中,咪唑环5位与疏水支架相连的拟肽在50 nM时显示出超过70%的抑制活性,而相应的C-4区域异构体活性较低。发现酯前药23对布氏布氏锥虫和罗德西亚布氏锥虫培养细胞是一种有效的抑制剂,其ED(50)值分别为0.025和0.0026 microM。此外,在23中引入第二个咪唑基团得到31,其对寄生虫的抑制活性最高,ED(50)为0.0015 microM。结果表明,TbPFT抑制剂的效力与相应酯对布氏锥虫细胞的细胞毒性高度相关。这些研究证实TbPFT是开发针对非洲昏睡病新疗法的一个靶点。