首页> 外文期刊>The Journal of Organic Chemistry >Conformation of N~α-Substituted Hydrazino Acetamides in the Precious Help of the Analysis of Δδ between Amidic Hydrogens, and Correlation to the Conformation of Aza-β~3-peptides
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Conformation of N~α-Substituted Hydrazino Acetamides in the Precious Help of the Analysis of Δδ between Amidic Hydrogens, and Correlation to the Conformation of Aza-β~3-peptides

机译:N〜α取代的乙酰乙酰胺的构象在酰胺氢之间的Δδ分析中的宝贵帮助以及与Aza-β〜3-肽构象的相关性

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We studied the conformation of a series of primary amides in a solution of chloroform. Classical NMR tools such as dilution experiments, influence of DMSO, and 2D-NOESY, together with X-ray diffraction, were combined with an analysis of the difference of the chemical shift Δδ between the geminal amidic protons. This study was addressed in order to understand the conformation adopted by hydrazino acetamides 1a and 1b as model compounds for aza-β~3-peptides. In this manner, it was possible to show that the amidic group of these compounds acts as a H-bond donor and interacts with two different H-bond acceptors. We concluded that the hydrazinoturn, a specific bifurcated H-bond system observed in the solid state, is also the preferred conformation of hydrazino acetamides 1a and 1b in solution. Our results show that the short-range interaction with the N~α-nitrogen lone pair not only stabilizes the C8 pseudocycle but could also contribute to the folding process of aza-β~3-peptides. In light of this, it could explain why aza-β~3-peptides develop a different H-bond network in comparison to their isosteric β~3-peptides analogues. Our work is in keeping with the recent interest of hydrazino peptides as an extension of the β-peptide concept.
机译:我们研究了氯仿溶液中一系列伯酰胺的构象。将经典的NMR工具(例如稀释实验,DMSO和2D-NOESY的影响)与X射线衍射一起,结合分析双键ton质子之间化学位移Δδ的差异。进行这项研究是为了理解肼基乙酰胺1a和1b作为aza-β〜3-肽的模型化合物所采用的构象。以这种方式,有可能表明这些化合物的酰胺基充当氢键供体并与两个不同的氢键受体相互作用。我们得出的结论是,肼苯二酚,一种在固态下观察到的特定的分叉H键系统,也是溶液中肼基乙酰胺1a和1b的优选构象。我们的结果表明,与N〜α-氮孤对的短程相互作用不仅稳定了C8假环,而且还可能有助于aza-β〜3-肽的折叠过程。鉴于此,它可以解释为什么aza-β〜3-肽与其等构的β〜3-肽类似物相比会形成不同的H键网络。我们的工作与肼基肽作为β肽概念的扩展的最新兴趣保持一致。

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