Hassani Mary, Cai Wen, Koelsch Katherine H, Holley David C, Rose Anthony S, Olang Fatemeh, Lineswala Jayana P, Holloway William G, Gerdes John M, Behforouz Mohammad, Beall Howard D
Center for Environmental Health Sciences, Department of Biomedical and Pharmaceutical Sciences, The University of Montana, Missoula, MT 59812, USA.
J Med Chem. 2008 Jun 12;51(11):3104-15. doi: 10.1021/jm701066a. Epub 2008 May 6.
A 1H69 crystal structure-based in silico model of the NAD(P)H:quinone oxidoreductase 1 (NQO1) active site has been developed to facilitate NQO1-directed lavendamycin antitumor agent development. Lavendamycin analogues were designed as NQO1 substrates utilizing structure-based design criteria. Computational docking studies were performed using the model to predict NQO1 substrate specificity. Designed N-acyllavendamycin esters and amides were synthesized by Pictet-Spengler condensation. Metabolism and cytotoxicity studies were performed on the analogues with recombinant human NQO1 and human colon adenocarcinoma cells (NQO1-deficient BE and NQO1-rich BE-NQ). Docking and biological data were found to be correlated where analogues 12, 13, 14, 15, and 16 were categorized as good, poor, poor, poor, and good NQO1 substrates, respectively. Our results demonstrated that the ligand design criteria were valid, resulting in the discovery of two good NQO1 substrates. The observed consistency between the docking and biological data suggests that the model possesses practical predictive power.
已开发出一种基于1H69晶体结构的烟酰胺腺嘌呤二核苷酸磷酸(NAD(P)H):醌氧化还原酶1(NQO1)活性位点的计算机模拟模型,以促进针对NQO1的拉文达霉素抗肿瘤药物的开发。利用基于结构的设计标准,将拉文达霉素类似物设计为NQO1底物。使用该模型进行了计算对接研究,以预测NQO1底物特异性。通过Pictet-Spengler缩合反应合成了设计的N-酰基拉文达霉素酯和酰胺。用重组人NQO1和人结肠腺癌细胞(NQO1缺陷的BE细胞和NQO1丰富的BE-NQ细胞)对这些类似物进行了代谢和细胞毒性研究。发现对接数据和生物学数据具有相关性,其中类似物12、13、14、15和16分别被归类为良好、较差、较差、较差和良好的NQO1底物。我们的结果表明,配体设计标准是有效的,从而发现了两种良好的NQO1底物。对接数据和生物学数据之间观察到的一致性表明该模型具有实际预测能力。