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基于二酮哌嗪分子结构特征的新型功能分子的开发

[Development of Novel Functional Molecules Based on the Molecular Structure Characteristics of Diketopiperazines].

作者信息

Nakao Michiyasu

机构信息

Graduate School of Pharmaceutical Sciences, Tokushima University.

出版信息

Yakugaku Zasshi. 2017;137(12):1505-1516. doi: 10.1248/yakushi.17-00176.

Abstract

This article focuses on our investigation of the molecular structure characteristics of diketopiperazines (DKPs), and application of these findings to the development of novel functional molecules. DKPs bearing a benzyl moiety are known to adopt a folded conformation, in which the benzyl moiety is folded over the DKP ring. In order to investigate the driving force behind the folded conformation, we synthesized DKPs bearing a benzyl moiety with different para-substituents, and demonstrated that the folded conformation likely arose from intramolecular CH/π interactions, based on the electronic effects of para-substituents on the benzyl group in H NMR spectroscopy. On the other hand, N4-methylation of DKPs bearing a benzyl moiety was found to change their folded conformation to an extended conformation, based on single crystal X-ray crystallography and H NMR spectroscopy analysis. Next, we attempted to synthesize both hydroxamate-type siderophores containing the DKP ring: rhodotorulic acid and erythrochelin. Facile synthesis of rhodotorulic acid and its N,N'-dimethylated derivative was achieved by microwave-assisted cyclization of the corresponding dipeptide precursors. Interestingly, N,N'-dimethylated rhodotorulic acid was found to be more soluble in various organic solvents than rhodotorulic acid. Moreover, erythrochelin was synthesized for the first time, and its metal-chelating ability with not only Fe(III) but also Mg(II) was confirmed based on electrospray ionization mass spectrometry (ESI-MS) analysis. Finally, we synthesized DKPs bearing a primary amino group, and found that they could catalyze the asymmetric aldol reaction between hydroxyacetone and p-nitrobenzaldehyde.

摘要

本文重点关注我们对二酮哌嗪(DKPs)分子结构特征的研究,以及将这些研究结果应用于新型功能分子的开发。已知带有苄基部分的DKPs会采取折叠构象,其中苄基部分折叠在DKP环上。为了研究这种折叠构象背后的驱动力,我们合成了带有不同对位取代基的苄基部分的DKPs,并基于1H NMR光谱中对位取代基对苄基的电子效应,证明这种折叠构象可能源于分子内的CH/π相互作用。另一方面,基于单晶X射线晶体学和1H NMR光谱分析,发现带有苄基部分的DKPs的N4-甲基化会将其折叠构象转变为伸展构象。接下来,我们尝试合成两种含有DKP环的异羟肟酸型铁载体:红酵母氨酸和红螯菌素。通过相应二肽前体的微波辅助环化反应,轻松实现了红酵母氨酸及其N,N'-二甲基化衍生物的合成。有趣的是,发现N,N'-二甲基化的红酵母氨酸在各种有机溶剂中的溶解度比红酵母氨酸更高。此外,首次合成了红螯菌素,并基于电喷雾电离质谱(ESI-MS)分析证实了其不仅与Fe(III),还与Mg(II)的金属螯合能力。最后,我们合成了带有伯氨基的DKPs,发现它们可以催化羟基丙酮和对硝基苯甲醛之间的不对称羟醛反应。

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