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题名

N-thiadiazole-4-hydroxy-2-quinolone-3-carboxamides bearing heteroaromatic rings as novel antibacterial agents: Design, synthesis, biological evaluation and target identification

作者
通讯作者Xia,Jie; Wu,Song
发表日期
2020-02-15
DOI
发表期刊
ISSN
0223-5234
EISSN
1768-3254
卷号188
摘要

Due to the occurrence of antibiotic resistance, bacterial infectious diseases have become a serious threat to public health. To overcome antibiotic resistance, novel antibiotics are urgently needed. N-thiadiazole-4-hydroxy-2-quinolone-3-carboxamides are a potential new class of antibacterial agents, as one of its derivatives was identified as an antibacterial agent against S. aureus. However, no potency-directed structural optimization has been performed. In this study, we designed and synthesized 37 derivatives, and evaluated their antibacterial activity against S. aureus ATCC29213, which led to the identification of ten potent antibacterial agents with minimum inhibitory concentration (MIC) values below 1 μg/mL. Next, we performed bacterial growth inhibition assays against a panel of drug-resistant clinical isolates, including methicillin-resistant S. aureus, and cytotoxicity assays with HepG2 and HUVEC cells. One of the tested compounds named 1-ethyl-4-hydroxy-2-oxo-N-(5-(thiazol-2-yl)-1,3,4-thiadiazol-2-yl)-1,2-dihydroquinoline-3-carboxamide (g37) showed 2 to 128-times improvement compared with vancomycin in term of antibacterial potency against the tested strains (MICs: 0.25–1 μg/mL vs. 1–64 μg/mL) and an optimal selective toxicity (HepG2/MRSA, 110.6 to 221.2; HUVEC/MRSA, 77.6–155.2). Further, comprehensive evaluation indicated that g37 did not induce resistance development of MRSA over 20 passages, and it has been confirmed as a bactericidal, metabolically stable, orally active antibacterial agent. More importantly, we have identified the S. aureus DNA gyrase B as its potential target and proposed a potential binding mode by molecular docking. Taken together, the present work reports the most potent derivative of this chemical series (g37) and uncovers its potential target, which lays a solid foundation for further lead optimization facilitated by the structure-based drug design technique.

关键词
相关链接[Scopus记录]
收录类别
语种
英语
学校署名
其他
资助项目
China Scholarship Council[201606010345]
WOS研究方向
Pharmacology & Pharmacy
WOS类目
Chemistry, Medicinal
WOS记录号
WOS:000515428100024
出版者
ESI学科分类
CHEMISTRY
Scopus记录号
2-s2.0-85078738790
来源库
Scopus
引用统计
被引频次[WOS]:39
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/72399
专题生命科学学院_生物系
生命科学学院
南方科技大学医学院
作者单位
1.State Key Laboratory of Bioactive Substance and Function of Natural Medicines,Department of New Drug Research and Development,Institute of Materia Medica,Chinese Academy of Medical Sciences and Peking Union Medical College,Beijing,100050,China
2.Department of Biology,Guangdong Provincial Key Laboratory of Cell Microenvironment and Disease Research,Shenzhen Key Laboratory of Cell Microenvironment and SUSTech-HKU Joint Laboratories for Matrix Biology,Southern University of Science and Technology,Shenzhen,518055,China
3.Center for Bioinformatics (ZBH),Department of Computer Science,Faculty of Mathematics,Informatics and Natural Sciences,Universität Hamburg,Hamburg,Germany
4.Department of Chemistry,Faculty of Mathematics and Natural Sciences,University of Bergen,Bergen,Norway
5.Computational Biology Unit (CBU),University of Bergen,Bergen,Norway
推荐引用方式
GB/T 7714
Xue,Wenjie,Li,Xueyao,Ma,Guixing,et al. N-thiadiazole-4-hydroxy-2-quinolone-3-carboxamides bearing heteroaromatic rings as novel antibacterial agents: Design, synthesis, biological evaluation and target identification[J]. EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY,2020,188.
APA
Xue,Wenjie.,Li,Xueyao.,Ma,Guixing.,Zhang,Hongmin.,Chen,Ya.,...&Wu,Song.(2020).N-thiadiazole-4-hydroxy-2-quinolone-3-carboxamides bearing heteroaromatic rings as novel antibacterial agents: Design, synthesis, biological evaluation and target identification.EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY,188.
MLA
Xue,Wenjie,et al."N-thiadiazole-4-hydroxy-2-quinolone-3-carboxamides bearing heteroaromatic rings as novel antibacterial agents: Design, synthesis, biological evaluation and target identification".EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY 188(2020).
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