Synthesis, testing, and computational modeling of pleuromutilin 1,2,3-triazole derivatives in the ribosome

Logan M. Breiner , Anthony J. Briganti , Jennifer P. McCord , Moriah E. Heifetz , Sophia Y. Philbrook , Carla Slebodnick , Anne M. Brown , Andrew N. Lowell
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引用次数: 1

Abstract

Pleuromutilin antimicrobials have given rise to the most recently FDA approved class of antibiotics for systemic human use. In this work, we describe a synthesis, assay, modeling approach to pleuromutilin development for the highly complex bacterial ribosome. Libraries of substituted 1,2,3-triazole derivatives were synthesized at the pleuromutilin C20 position by applying a recent anti-Markovnikov hydroazidation protocol to directly install an azido group, and at the C22 position through established methods. To learn about the interactions of these libraries with the ribosome and assess the potential for subsequent derivatization, an unbiased computational modeling method was used to biochemically rationalize binding modes of the C20 and C22 pleuromutilin derivatives. A pattern emerged where the triazole and its pendant chain, be it off the C20 or C22 position, moved to occupy the space vacated by the C22 sulfide group of clinical pleuromutilin compounds. Subsequent activity testing and comparative ranking of the computationally docked derivatives to the in vitro activity results showed a high predictability rating for the C22 substituted compounds. These combined investigations reveal potential restrictions and sites for expansion, paving the way for the development of future pleuromutilin derivates and other ribosome targeting antibiotics.

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核糖体中胸膜残蛋白1,2,3-三唑衍生物的合成、测试和计算建模
胸膜残素抗菌剂已经引起了最近FDA批准的一类全身人类使用的抗生素。在这项工作中,我们描述了高度复杂的细菌核糖体的胸膜残蛋白的合成,分析,建模方法。采用最新的反markovnikov氢叠氮化方法直接在胸膜残基C20位置和C22位置合成取代的1,2,3-三唑衍生物库。为了了解这些文库与核糖体的相互作用,并评估后续衍生化的潜力,使用无偏计算建模方法对C20和C22胸膜残蛋白衍生物的结合模式进行生化合理化。出现了一种模式,即三唑和它的垂链,无论是在C20还是C22位置上,都移动到由C22硫化物基团空出的空间中。随后的活性测试和计算对接衍生物与体外活性结果的比较排名表明,C22取代化合物具有很高的可预测性。这些综合调查揭示了潜在的限制和扩展的地点,为未来开发胸膜残蛋白衍生物和其他靶向抗生素的核糖体铺平了道路。
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Tetrahedron chem
Tetrahedron chem Organic Chemistry
CiteScore
3.60
自引率
0.00%
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0
审稿时长
27 days
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