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Supramolecular control for the modular synthesis of pseudopeptidic macrocycles through an anion-templated reaction

机译:超分子控制通过阴离子模板反应模拟合成假肽大环化合物

摘要

The anion-templated synthesis of different pseudopeptidic macrocycles has been studied in detail by using a multidisciplinary approach. The reaction between an open-chain pseudopeptidic diamine and the appropriate dialdehyde is highly affected by the presence of the best fitting anionic template. The formation of the corresponding macrocyclic tetraimino-template supramolecular complex is demonstrated by NMR (ROESY and PGSE) and mass spectrometry (ESI-TOF). These supramolecular complexes can be easily reduced to the corresponding more stable tetraamine macrocycles. Accordingly, we have used this reaction to efficiently synthesize a family of new pseudopeptidic macrocycles in a one-pot two-steps anion-templated reductive amination reaction, which comprises a multicomponent macrocyclization through the selective formation of four chemical bonds to yield a unique macrocyclic structure. Different variables like the aliphatic spacer between amino acidic moieties, geometry of the dialdehyde, and structure of the amino acid side chains were thoroughly studied, and their effect in the formation and stability of the supramolecular complexes discussed. The conformational preorganization induced by the template has been monitored by circular dichroism, reflecting the differences observed in the isolated yields, as well as by NMR spectroscopy. This effect has been also supported by molecular modeling. All the experimental and theoretical techniques were strongly consistent and reflected the same trends by comparing the different structural variables introduced in the system.
机译:通过使用多学科方法,已详细研究了不同假肽大环化合物的阴离子模板合成。开链假肽二胺和适当的二醛之间的反应受最佳拟合阴离子模板的存在影响很大。通过NMR(ROESY和PGSE)和质谱(ESI-TOF)证明了相应的大环四亚氨基-模板超分子复合物的形成。这些超分子复合物可以容易地还原为相应的更稳定的四胺大环。因此,我们已经使用该反应在一锅两步阴离子模板还原胺化反应中有效合成了一系列新的伪肽大环化合物,该反应包括通过选择性形成四个化学键以产生独特的大环结构的多组分大环化。深入研究了不同的变量,如氨基酸部分之间的脂族间隔基,二醛的几何形状以及氨基酸侧链的结构,并讨论了它们对超分子复合物的形成和稳定性的影响。模板诱导的构象预组织已通过圆二色性监测,反映了分离的收率中观察到的差异,以及通过NMR光谱法进行了监测。分子建模也支持了这种效果。所有的实验和理论技术都非常一致,并且通过比较系统中引入的不同结构变量来反映相同的趋势。

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