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CHEMICAL TAILORING OF TEICOPLANIN WITH SITE-SELECTIVE REACTIONS

机译:位置选择性反应对替考拉宁的化学剪裁

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摘要

Semi-synthesis of natural product derivatives combines the power of fermentation with orthogonal chemical reactions. Yet, chemical modification of complex structures represents an unmet challenge, as poor selectivity often undermines efficiency. The complex antibiotic teicoplanin eradicates bacterial infections. However, as resistance emerges, the demand for improved analogs grows. We have discovered chemical reactions that achieve site-selective alteration of teicoplanin. Utilizing peptide-based additives that alter reaction selectivities, certain bromo-teicoplanins are accessible. These new compounds are also scaffolds for selective cross-coupling reactions, enabling further molecular diversification. These studies enable two-step access to glycopeptide analogs not available through either biosynthesis or rapid total chemical synthesis alone. The new compounds exhibit a spectrum of activities, revealing that selective chemical alteration of teicoplanin may lead to analogs with attenuated or enhanced antibacterial properties, in particular against vancomycin and teicoplanin resistance strains.
机译:天然产物衍生物的半合成将发酵的能力与正交化学反应结合在一起。然而,复杂的结构进行化学修饰代表了未解决的挑战,因为选择性差通常会降低效率。复杂的抗生素替考拉宁可消除细菌感染。但是,随着电阻的出现,对改进的类似物的需求也在增长。我们发现实现替考拉宁定点选择性改变的化学反应。利用改变反应选择性的基于肽的添加剂,某些溴替考拉宁是可及的。这些新化合物也是用于选择性交叉偶联反应的支架,可实现进一步的分子多样化。这些研究使通过生物合成或仅通过快速总化学合成无法获得的糖肽类似物的两步访问成为可能。新化合物表现出一系列活性,表明替考拉宁的选择性化学改变可能导致具有减弱或增强的抗菌特性的类似物,特别是对万古霉素和替考拉宁耐药菌株的类似物。

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