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多肽类抗生素多粘菌素的全合成与半合成及其类似物的研究——2-硫代或 10-硫代修饰以阐明构效关系并提高抗菌活性

Total and Semisyntheses of Polymyxin Analogues with 2-Thr or 10-Thr Modifications to Decipher the Structure-Activity Relationship and Improve the Antibacterial Activity.

机构信息

CAS Key Laboratory of Receptor Research, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, 555 Zuchongzhi Road, Pudong, Shanghai 201203, China.

School of Pharmaceutical Science and Technology, Hangzhou Institute of Advanced Study, Hangzhou 310024, China.

出版信息

J Med Chem. 2021 May 13;64(9):5746-5765. doi: 10.1021/acs.jmedchem.0c02217. Epub 2021 Apr 28.

Abstract

Herein, we report the total and semisyntheses of a series of polymyxin analogues with 2-Thr and 10-Thr modifications to reveal the structure-activity relationship (SAR), which has not been fully elucidated previously. We employed two total-synthetic strategies to facilitate the diversified replacements on 2-Thr or 10-Thr, respectively. Moreover, semisynthetic approaches were utilized to achieve selective esterification of 2-Thr or dual esterification of both 2- and 10-Thr. Based on the results of antibacterial assays, SAR analysis implicated that the replacement of 2-/10-Thr with amino acids carrying hydrophobic side chains can maintain the activity against but had varied effects on other tested Gram-negative bacteria. The aminoacetyl esterification on 2-/10-Thr achieved excellent antibacterial activity, and the compound exhibited 2-8-fold higher activity against different strains and lower toxicity toward the HK-2 cell line. This work explored the SAR of polymyxin 2-/10-Thr and provided a promising strategy for the development of novel polymyxin derivatives.

摘要

在此,我们报道了一系列带有 2-Thr 和 10-Thr 修饰的多粘菌素类似物的全合成和半合成,以揭示以前尚未完全阐明的构效关系(SAR)。我们采用了两种全合成策略,分别有利于 2-Thr 或 10-Thr 上的多样化取代。此外,还利用半合成方法实现了 2-Thr 的选择性酯化或 2-和 10-Thr 的双重酯化。基于抗菌测定结果,SAR 分析表明,用带有疏水侧链的氨基酸替代 2-/10-Thr 可以保持对 的活性,但对其他测试的革兰氏阴性菌有不同的影响。2-/10-Thr 上的氨基乙酰酯化实现了优异的抗菌活性,化合物 对不同菌株的活性提高了 2-8 倍,对 HK-2 细胞系的毒性降低。这项工作探索了多粘菌素 2-/10-Thr 的 SAR,并为新型多粘菌素衍生物的开发提供了有前景的策略。

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