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氟喹诺吩恶嗪衍生物作为细菌拓扑异构酶IA抑制剂的合成、评价及比较分子力场分析研究

Synthesis, evaluation, and CoMFA study of fluoroquinophenoxazine derivatives as bacterial topoisomerase IA inhibitors.

作者信息

Yu Xufen, Zhang Mingming, Annamalai Thirunavukkarasu, Bansod Priyanka, Narula Gagandeep, Tse-Dinh Yuk-Ching, Sun Dianqing

机构信息

Department of Pharmaceutical Sciences, The Daniel K. Inouye College of Pharmacy, University of Hawaii at Hilo, 34 Rainbow Drive, Hilo, HI 96720, USA.

Department of Chemistry & Biochemistry, Florida International University, Miami, FL 33199, USA.

出版信息

Eur J Med Chem. 2017 Jan 5;125:515-527. doi: 10.1016/j.ejmech.2016.09.053. Epub 2016 Sep 18.

Abstract

New antibacterial agents with novel target and mechanism of action are urgently needed to combat problematic bacterial infections and mounting antibiotic resistances. Topoisomerase IA represents an attractive and underexplored antibacterial target, as such, there is a growing interest in developing selective and potent topoisomerase I inhibitors for antibacterial therapy. Based on our initial biological screening, fluoroquinophenoxazine 1 was discovered as a low micromolar inhibitor against E. coli topoisomerase IA. In the literature, fluoroquinophenoxazine analogs have been investigated as antibacterial and anticancer agents, however, their topoisomerase I inhibition was relatively underexplored and there is little structure-activity relationship (SAR) available. The good topoisomerase I inhibitory activity of 1 and the lack of SAR prompted us to design and synthesize a series of fluoroquinophenoxazine analogs to systematically evaluate the SAR and to probe the structural elements of the fluoroquinophenoxazine core toward topoisomerase I enzyme target recognition. In this study, a series of fluoroquinophenoxazine analogs was designed, synthesized, and evaluated as topoisomerase I inhibitors and antibacterial agents. Target-based assays revealed that the fluoroquinophenoxazine derivatives with 9-NH and/or 6-substituted amine functionalities generally exhibited good to excellent inhibitory activities against topoisomerase I with ICs ranging from 0.24 to 3.9 μM. Notably, 11a bearing the 6-methylpiperazinyl and 9-amino motifs was identified as one of the most potent topoisomerase I inhibitors (IC = 0.48 μM), and showed broad spectrum antibacterial activity (MICs = 0.78-7.6 μM) against all the bacteria strains tested. Compound 11g with the 6-bipiperidinyl lipophilic side chain exhibited the most potent antituberculosis activity (MIC = 2.5 μM, SI = 9.8). In addition, CoMFA analysis was performed to investigate the 3D-QSAR of this class of fluoroquinophenoxazine derivatives. The constructed CoMFA model produced reasonable statistics (q = 0.688 and r = 0.806). The predictive power of the developed model was obtained using a test set of 7 compounds, giving a predictive correlation coefficient r of 0.767. Collectively, these promising data demonstrated that fluoroquinophenoxazine derivatives have the potential to be developed as a new chemotype of potent topoisomerase IA inhibitors with antibacterial therapeutic potential.

摘要

迫切需要具有新型靶点和作用机制的新型抗菌剂来对抗棘手的细菌感染和日益增加的抗生素耐药性。拓扑异构酶IA是一个有吸引力但尚未充分探索的抗菌靶点,因此,人们对开发用于抗菌治疗的选择性和强效拓扑异构酶I抑制剂的兴趣与日俱增。基于我们最初的生物学筛选,发现氟喹诺吩嗪1是一种对大肠杆菌拓扑异构酶IA具有低微摩尔抑制活性的抑制剂。在文献中,氟喹诺吩嗪类似物已被研究作为抗菌和抗癌剂,然而,它们对拓扑异构酶I的抑制作用研究相对较少,且几乎没有可用的构效关系(SAR)。1具有良好的拓扑异构酶I抑制活性且缺乏SAR,这促使我们设计并合成一系列氟喹诺吩嗪类似物,以系统地评估SAR,并探究氟喹诺吩嗪核心结构对拓扑异构酶I酶靶点识别的结构要素。在本研究中,设计、合成并评估了一系列氟喹诺吩嗪类似物作为拓扑异构酶I抑制剂和抗菌剂。基于靶点的分析表明,具有9-NH和/或6-取代胺官能团的氟喹诺吩嗪衍生物通常对拓扑异构酶I表现出良好到优异的抑制活性,IC50范围为0.24至3.9 μM。值得注意的是,带有6-甲基哌嗪基和9-氨基基序的11a被鉴定为最有效的拓扑异构酶I抑制剂之一(IC50 = 0.48 μM),并对所有测试的细菌菌株表现出广谱抗菌活性(MICs = 0.78 - 7.6 μM)。具有6-联哌啶基亲脂性侧链的化合物11g表现出最强的抗结核活性(MIC = 2.5 μM,SI = 9.8)。此外,进行了CoMFA分析以研究这类氟喹诺吩嗪衍生物的3D-QSAR。构建的CoMFA模型产生了合理的统计数据(q = 0.688和r = 0.806)。使用7种化合物的测试集获得了所开发模型的预测能力,预测相关系数r为0.767。总体而言,这些有前景的数据表明,氟喹诺吩嗪衍生物有潜力被开发为具有抗菌治疗潜力的强效拓扑异构酶IA抑制剂的新型化学类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7609/5148682/266e2e09d0c3/nihms819881f1.jpg

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