Kotian Pravin L, Krishnan Raman, Rowland Scott, El-Kattan Yahya, Saini Surendra K, Upshaw Ramanda, Bantia Shanta, Arnold Shane, Babu Y Sudhakar, Chand Pooran
BioCryst Pharmaceuticals, Inc., 2190 Parkway Lake Drive, Birmingham, AL 35244, USA.
Bioorg Med Chem. 2009 Jun 1;17(11):3934-58. doi: 10.1016/j.bmc.2009.04.013. Epub 2009 Apr 12.
Factor VIIa (FVIIa), a serine protease enzyme, coupled with tissue factor (TF) plays an important role in a number of thrombosis-related disorders. Inhibition of TF x FVIIa occurs early in the coagulation cascade and might provide some safety advantages over other related enzymes. We report here a novel series of substituted biphenyl derivatives that are highly potent and selective TF x FVIIa inhibitors. Parallel synthesis coupled with structure-based drug design allowed us to explore the S2 pocket of the enzyme active site. A number of compounds with IC(50) value of <10 nM were synthesized. The X-ray crystal structures of some of these compounds complexed with TF x FVIIa were determined and results were applied to design the next round of inhibitors. All the potent inhibitors were tested for inhibition against a panel of related enzymes and selectivity of 17,600 over thrombin, 450 over trypsin, 685 over FXa, and 76 over plasmin was achieved. Two groups, vinyl 36b and 2-furan 36ab, were identified as the optimum binding substituents on the phenyl ring in the S2 pocket. Compounds with these two substituents are the most potent compounds in this series with good selectivity over related serine proteases. These compounds will be further explored for structure-activity relationship.
凝血因子VIIa(FVIIa)是一种丝氨酸蛋白酶,与组织因子(TF)结合,在许多与血栓形成相关的疾病中发挥重要作用。抑制TF x FVIIa在凝血级联反应早期发生,可能比其他相关酶具有一些安全优势。我们在此报告了一系列新型的取代联苯衍生物,它们是高效且选择性的TF x FVIIa抑制剂。平行合成与基于结构的药物设计使我们能够探索酶活性位点的S2口袋。合成了许多IC(50)值<10 nM的化合物。测定了其中一些与TF x FVIIa复合的化合物的X射线晶体结构,并将结果应用于设计下一轮抑制剂。所有强效抑制剂都针对一组相关酶进行了抑制测试,对凝血酶的选择性达到17,600,对胰蛋白酶的选择性达到450,对FXa的选择性达到685,对纤溶酶的选择性达到76。乙烯基36b和2-呋喃36ab这两组被确定为S2口袋中苯环上的最佳结合取代基。具有这两个取代基的化合物是该系列中最有效的化合物,对相关丝氨酸蛋白酶具有良好的选择性。这些化合物将进一步探索构效关系。