Coumar Mohane Selvaraj, Leou Jiun-Shyang, Shukla Paritosh, Wu Jian-Sung, Dixit Ajay Kumar, Lin Wen-Hsing, Chang Chun-Yu, Lien Tzu-Wen, Tan Uan-Kang, Chen Chun-Hwa, Hsu John T-A, Chao Yu-Sheng, Wu Su-Ying, Hsieh Hsing-Pang
Division of Biotechnology and Pharmaceutical Research, National Health Research Institutes, 35 Keyan Road, Zhunan, Miaoli County 350, Taiwan, ROC.
J Med Chem. 2009 Feb 26;52(4):1050-62. doi: 10.1021/jm801270e.
Aurora kinases have emerged as attractive targets for the design of anticancer drugs. Through structure-based virtual screening, novel pyrazole hit 8a was identified as Aurora kinase A inhibitor (IC(50) = 15.1 microM). X-ray cocrystal structure of 8a in complex with Aurora A protein revealed the C-4 position ethyl carboxylate side chain as a possible modification site for improving the potency. On the basis of this insight, bioisosteric replacement of the ester with amide linkage and changing the ethyl substituent to hydrophobic 3-acetamidophenyl ring led to the identification of 12w with a approximately 450-fold improved Aurora kinase A inhibition potency (IC(50) = 33 nM), compared to 8a. Compound 12w showed selective inhibition of Aurora A kinase over Aurora B/C, which might be due to the presence of a unique H-bond interaction between the 3-acetamido group and the Aurora A nonconserved Thr217 residue, which in Aurora B/C is Glu and found to sterically clash with the 3-acetamido group in modeling studies.
极光激酶已成为抗癌药物设计中颇具吸引力的靶点。通过基于结构的虚拟筛选,新型吡唑类命中化合物8a被鉴定为极光激酶A抑制剂(IC(50)=15.1微摩尔)。8a与极光A蛋白的X射线共晶体结构显示,C-4位乙酯侧链可能是提高活性的修饰位点。基于这一见解,用酰胺键对酯进行生物电子等排体替换,并将乙基取代基改为疏水性的3-乙酰氨基苯环,从而鉴定出12w,其对极光激酶A的抑制活性比8a提高了约450倍(IC(50)=33纳摩尔)。化合物12w对极光A激酶的抑制作用具有选择性,优于极光B/C激酶,这可能是由于3-乙酰氨基基团与极光A非保守苏氨酸217残基之间存在独特的氢键相互作用,而在极光B/C激酶中该残基为谷氨酸,在模型研究中发现其与3-乙酰氨基基团存在空间冲突。