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作为喹诺酮类药物作用靶点的DNA旋转酶

DNA Gyrase as a Target for Quinolones.

作者信息

Spencer Angela C, Panda Siva S

机构信息

Department of Chemistry and Physics, Augusta University, Augusta, GA 30912, USA.

出版信息

Biomedicines. 2023 Jan 27;11(2):371. doi: 10.3390/biomedicines11020371.

Abstract

Bacterial DNA gyrase is a type II topoisomerase that can introduce negative supercoils to DNA substrates and is a clinically-relevant target for the development of new antibacterials. DNA gyrase is one of the primary targets of quinolones, broad-spectrum antibacterial agents and are used as a first-line drug for various types of infections. However, currently used quinolones are becoming less effective due to drug resistance. Common resistance comes in the form of mutation in enzyme targets, with this type being the most clinically relevant. Additional mechanisms, conducive to quinolone resistance, are arbitrated by chromosomal mutations and/or plasmid-gene uptake that can alter quinolone cellular concentration and interaction with the target, or affect drug metabolism. Significant synthetic strategies have been employed to modify the quinolone scaffold and/or develop novel quinolones to overcome the resistance problem. This review discusses the development of quinolone antibiotics targeting DNA gyrase to overcome bacterial resistance and reduce toxicity. Moreover, structural activity relationship (SAR) data included in this review could be useful for the development of future generations of quinolone antibiotics.

摘要

细菌DNA促旋酶是一种II型拓扑异构酶,可将负超螺旋引入DNA底物,是开发新型抗菌药物的临床相关靶点。DNA促旋酶是喹诺酮类药物的主要靶点之一,喹诺酮类是广谱抗菌剂,用作各类感染的一线药物。然而,由于耐药性,目前使用的喹诺酮类药物正变得越来越无效。常见的耐药形式是酶靶点突变,这种类型在临床上最为相关。其他导致喹诺酮耐药的机制由染色体突变和/或质粒基因摄取介导,这些突变和摄取可改变喹诺酮的细胞浓度及其与靶点的相互作用,或影响药物代谢。人们已采用多种重要的合成策略来修饰喹诺酮支架和/或开发新型喹诺酮,以克服耐药问题。本综述讨论了靶向DNA促旋酶的喹诺酮类抗生素的开发,以克服细菌耐药性并降低毒性。此外,本综述中包含的构效关系(SAR)数据可能有助于下一代喹诺酮类抗生素的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe0a/9953508/d3e6fcb5e007/biomedicines-11-00371-g001.jpg

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