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Epoxyamide-Based Strategy for the Synthesis of Polypropionate-Type Frameworks

机译:基于环氧酰胺的聚丙烯酸酯类骨架合成策略

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A new approach to the stereoselective synthesis of polypropionate-type frameworks is reported utilizing reactions of amide-stabilized sulfur ylides with chiral aldehydes. To establish a new strategy for macrolide fragment synthesis, the stereoselectivity of these reactions in the construction of epoxy amides was the most important aspect of this study. In this aspect, we found a strong influence of the protecting groups employed in the starting aldehydes upon the stereochemical outcome of their reactions with the sulfur ylide 1. Thus, numerous aldehydes showed remarkable stereofacial differentiation, providing a major diastereoisomer, in contrast to others that displayed a poor or no stereoselectivity. Despite the difficulties encountered for some cases with respect to their diastereomeric yields, we were able to prepare various stereotetrads and stereopentads, thus enhancing the synthetic value of this new methodology for the preparation of typical polypropionate frameworks found in many natural products, in particular the macrolide class of antibiotics.
机译:据报道,利用酰胺稳定的硫酰化物与手性醛的反应,一种新的立体选择性合成聚丙烯酸酯型骨架的方法。为了建立大环内酯片段合成的新策略,这些反应在构建环氧酰胺中的立体选择性是这项研究的最重要方面。在这方面,我们发现起始醛中使用的保护基对其与硫酰叶立德1反应的立体化学结果产生了强烈影响。因此,与其他醛相比,许多醛表现出显着的立体分化,提供了主要的非对映异构体立体选择性差或没有。尽管在某些情况下在其非对映异构体产量方面遇到了困难,但我们仍能够制备各种立体四链体和立体五单元体,从而提高了这种新方法的合成价值,该方法可用于制备许多天然产物(尤其是大环内酯)中典型的聚丙烯酸酯骨架。类抗生素。

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