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普拉替尼硫醚衍生物的半合成及生物学评价:针对耐甲氧西林金黄色葡萄球菌的双靶点FabF和FabH抑制剂

Semisynthesis and Biological Evaluation of Platencin Thioether Derivatives: Dual FabF and FabH Inhibitors against MRSA.

作者信息

Li Yuling, Weng Xiang, Deng Youchao, Pan Jian, Zhu Saibin, Wen Zhongqing, Yuan Yanqiu, Li Shaowen, Shen Ben, Duan Yanwen, Huang Yong

机构信息

Xiangya International Academy of Translational Medicine at Central South University, Changsha, Hunan 410013, China.

School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China.

出版信息

ACS Med Chem Lett. 2021 Feb 15;12(3):433-442. doi: 10.1021/acsmedchemlett.0c00653. eCollection 2021 Mar 11.

Abstract

The discovery and clinical use of multitarget monotherapeutic antibiotics is regarded as a promising approach to reduce the development of antibiotic resistance. Platencin (PTN), a potent natural antibiotic initially isolated from a soil actinomycete, targets both FabH and FabF, the initiation and elongation condensing enzymes for bacterial fatty acid biosynthesis. However, its further clinical development has been hampered by poor pharmacokinetics. Herein we report the semisynthesis and biological evaluation of platencin derivatives - with potent antibacterial activity against methicillin-resistant in vitro. Some of these PTN analogues showed similar yet distinct interactions with FabH and FabF, as shown by molecular docking, differential scanning fluorometry, and isothermal titration calorimetry. Compounds , , , and were further evaluated in a mouse peritonitis model, among which showed in vivo antibacterial activity comparable to that of PTN. Our results suggest that semisynthetic modification of PTN is a rapid route to obtain active PTN derivatives that might be further developed as promising antibiotics against drug-resistant major pathogens.

摘要

多靶点单药抗生素的发现及临床应用被视为减少抗生素耐药性产生的一种有前景的方法。普拉特辛(PTN)是一种最初从土壤放线菌中分离出的强效天然抗生素,它作用于细菌脂肪酸生物合成的起始缩合酶FabH和延伸缩合酶FabF。然而,其进一步的临床开发因药代动力学不佳而受阻。在此,我们报告了普拉特辛衍生物的半合成及生物学评价,这些衍生物在体外对耐甲氧西林菌具有强效抗菌活性。分子对接、差示扫描荧光法和等温滴定量热法表明,其中一些PTN类似物与FabH和FabF表现出相似但不同的相互作用。化合物 、 、 和 在小鼠腹膜炎模型中进一步评估,其中 在体内的抗菌活性与PTN相当。我们的结果表明,PTN的半合成修饰是获得活性PTN衍生物的快速途径,这些衍生物可能进一步开发成为针对耐药主要病原体的有前景的抗生素。

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