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Farnesyl Diphosphate Synthase Inhibitors With Unique Ligand-Binding Geometries

机译:具有独特配体结合几何结构的法呢基二磷酸合酶抑制剂

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Farnesyl diphosphate synthase (FPPS) is an important drug target for bone resorption, cancer, and some infectious diseases. Here, we report five new structures including two having unique bound ligand geometries. The diamidine inhibitor 7 binds to human FPPS close to the homoallylic (S2) and allosteric (S3) sites and extends into a new site, here called S4. With the bisphosphonate inhibitor 8, two molecules bind to Trypanosoma brucei FPPS, one molecule in the allylic site (Si) and the other close to S2, the first observation of two bisphosphonate molecules bound to FPPS. We also report the structures of apo-FPPS from T brucei, together with two more bisphosphonate-bound structures (2,9), for purposes of comparison. The diamidine structure is of particular interest because 7 could represent a new lead for lipophilic FPPS inhibitors, while 8 has low micromolar activity against T. brucei, the causative agent of human African trypanosomiasis.
机译:法呢基二磷酸合成酶(FPPS)是骨吸收,癌症和某些传染病的重要药物靶标。在这里,我们报告了五个新结构,其中两个具有独特的结合配体几何形状。二am抑制剂7与人FPPS靠近均烯丙基(S2)和变构(S3)位点结合,并延伸到新位点,此处称为S4。使用双膦酸酯抑制剂8,两个分子与布氏锥虫FPPS结合,一个分子位于烯丙基位点(Si),另一个靠近S2,首次观察到两个双膦酸酯分子与FPPS结合。为了比较,我们还报告了来自布鲁氏菌的载脂蛋白-FPPS的结构,以及另外两个与双膦酸酯结合的结构(2,9)。二am结构特别受关注,因为7可能代表亲脂性FPPS抑制剂的新线索,而8对人非洲锥虫病的病原体布鲁氏菌的微摩尔活性较低。

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