首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Probing the dynamic reversibility and generation of dynamic combinatorial libraries in the presence of bacterial model oligopeptides as templating guests of tetra-carbohydrazide macrocycles using electrospray mass spectrometry
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Probing the dynamic reversibility and generation of dynamic combinatorial libraries in the presence of bacterial model oligopeptides as templating guests of tetra-carbohydrazide macrocycles using electrospray mass spectrometry

机译:使用电喷雾质谱法在存在细菌模型寡肽作为四碳酰肼大环的模板客体的情况下探究动态可逆性和动态组合库的生成

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摘要

Over the past few decades, bacterial resistance to antibiotics has emerged as a real threat to human health. Accordingly, there is an urgent demand for the development of innovative strategies for discovering new antibiotics. We present the first use of tetra-carbohydrazide cyclophane macrocycles in dynamic combinatorial chemistry (DCC) and molecular recognition as chiral hosts binding oligopeptides, which mimic bacterial cell wall. This study introduces an innovative application of electrospray ionisation time-of-flight mass spectrometry (ESI-TOF MS) to oligopeptides recognition using DCC. METHODS A small dynamic library composed of eight functionalised macrocycles has been generated in solution and all members were characterised by ESI-TOF MS. We also probed the dynamic reversibility and mechanism of formation of tetra-carbohydrazide cyclophanes in real-time using ESI-TOF MS. RESULTS Dynamic reversibility of tetra-carbohydrazide cyclophanes is favored under thermodynamic control. The mechanism of formation of tetra-carbohydrazide cyclophanes involves key dialdehyde intermediates, which have been detected and assigned according to their high-resolution m/z values. Three members of the dynamic library bind efficiently in the gas phase to a selection of oligopeptides, unique to bacteria, allowing observation of host/guest complex ions in the gas phase. CONCLUSIONS We probed the mechanism of the [2+2]-cyclocondensation reaction forming library members, proved dynamic reversibility of tetra-carbohydrazide cyclophanes and showed that complex ions formed between library members and hosts can be observed in the gas phase, allowing the solution of an important problem of biological interest.
机译:在过去的几十年中,细菌对抗生素的耐药性已成为对人类健康的真正威胁。因此,迫切需要开发发现新抗生素的创新策略。我们目前在动态组合化学(DCC)和分子识别作为手性宿主结合寡肽,模仿细菌细胞壁的四碳酰肼环烷大环的首次使用。这项研究介绍了电喷雾电离飞行时间质谱(ESI-TOF MS)在使用DCC识别寡肽方面的创新应用。方法在溶液中生成了一个由8个功能化的大环组成的小型动态库,并通过ESI-TOF MS对所有成员进行了表征。我们还使用ESI-TOF MS实时研究了四碳酰肼环烷的动态可逆性和形成机理。结果在热力学控制下,四氨基脲环烷的动态可逆性是有利的。四碳酰肼环烷的形成机理涉及关键的二醛中间体,这些中间体已根据其高分辨率m / z值进行了检测和分配。动态库的三个成员可以在气相中有效结合细菌所特有的多种寡肽,从而可以观察到气相中的宿主/客体复合离子。结论我们探讨了[2 + 2]-环缩合反应形成库成员的机理,证明了四碳酰肼环烷的动态可逆性,并表明可以在气相中观察到库成员与主体之间形成的复合离子,从而使一个重要的生物学问题。

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