Kánai Károly, Arányi Péter, Böcskei Zsolt, Ferenczy György, Harmat Veronika, Simon Kálmán, Bátori Sándor, Náray-Szabo Gábor, Hermecz István
CHINOIN, Ltd, H-1045 Budapest, Hungary.
J Med Chem. 2008 Dec 11;51(23):7514-22. doi: 10.1021/jm800944x.
Three novel, N-acyl-pro-pyrrolidine-type, inhibitors of prolyl oligopeptidase (POP) with nanomolar activities were synthesized and their binding analyzed to the host enzyme in the light of X-ray diffraction and molecular modeling studies. We were interested in the alteration in the binding affinity at the S3 site as a function of the properties of the N-terminal group of the inhibitors. Our studies revealed that, for inhibitors with flat aromatic terminal groups, the optimal length of the linker chain is three C-C bonds, but this increases to four C-C bonds if there is a bulky group in the terminal position. Molecular dynamics calculations indicate that this is due to the better fit into the binding pocket. A 4-fold enhancement of the inhibitor activity upon replacement of the 4-CH2 group of the proline ring by CF2 is a consequence of a weak hydrogen bond formed between the fluorine atom and the hydroxy group of Tyr473 of the host enzyme. There is notably good agreement between the calculated and experimental free energies of binding; the average error in the IC50 values is around 1 order of magnitude.
合成了三种具有纳摩尔活性的新型N-酰基脯氨酰-脯氨酸型脯氨酰寡肽酶(POP)抑制剂,并根据X射线衍射和分子模拟研究分析了它们与宿主酶的结合情况。我们感兴趣的是,作为抑制剂N端基团性质的函数,S3位点结合亲和力的变化。我们的研究表明,对于具有扁平芳香族末端基团的抑制剂,连接链的最佳长度为三个C-C键,但如果末端位置有一个庞大基团,则该长度会增加到四个C-C键。分子动力学计算表明,这是由于其能更好地契合结合口袋。将脯氨酸环的4-CH2基团替换为CF2后,抑制剂活性提高了4倍,这是由于氟原子与宿主酶Tyr473的羟基之间形成了弱氢键。计算得到的结合自由能与实验值之间存在明显的良好一致性;IC50值的平均误差约为1个数量级。