Neves Marco A C, Dinis Teresa C P, Colombo Giorgio, Sá e Melo M Luisa
Centro de Estudos Farmacêuticos, Lab. Química Farmacêutica, Faculdade de Farmácia, Universidade de Coimbra, Rua do Norte, 3000-295 Coimbra, Portugal.
ChemMedChem. 2007 Dec;2(12):1750-62. doi: 10.1002/cmdc.200700149.
Aromatase, an enzyme of the cytochrome P450 family, is a very important pharmacological target, particularly for the treatment of breast cancer. The anti-aromatase activity of a set of natural polyphenolic compounds was evaluated in vitro. Strong aromatase inhibitors including flavones, flavanones, resveratrol, and oleuropein, with activities comparable to that of the reference anti-aromatase drug aminoglutethimide, were identified. Through the application of molecular modeling techniques based on grid-independent descriptors and molecular interaction fields, the major physicochemical features associated with inhibitory activity were disclosed, and a putative virtual active site of aromatase was proposed. Docking of the inhibitors into a 3D homology model structure of the enzyme defined a common binding mode for the small molecules under investigation. The good correlation between computational and biological results provides the first rationalization of the anti-aromatase activity of polyphenolic compounds. Moreover, the information generated in this approach should be further exploited for the design of new aromatase inhibitors.
芳香化酶是细胞色素P450家族的一种酶,是一个非常重要的药理学靶点,尤其对于乳腺癌的治疗。一组天然多酚类化合物的抗芳香化酶活性在体外进行了评估。已鉴定出包括黄酮类、黄烷酮类、白藜芦醇和橄榄苦苷在内的强效芳香化酶抑制剂,其活性与参考抗芳香化酶药物氨鲁米特相当。通过应用基于网格无关描述符和分子相互作用场的分子建模技术,揭示了与抑制活性相关的主要物理化学特征,并提出了芳香化酶的一个假定虚拟活性位点。将抑制剂对接至该酶的三维同源模型结构中,确定了所研究小分子的共同结合模式。计算结果与生物学结果之间的良好相关性为多酚类化合物的抗芳香化酶活性提供了首个合理解释。此外,该方法所产生的信息应进一步用于设计新型芳香化酶抑制剂。