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基于方酰胺的可折叠模块的构象偏好和自模板大环化

Conformational preferences and self-template macrocyclization of squaramide-based foldable modules.

作者信息

Rotger M Carmen, Piña M Neus, Frontera Antonio, Martorell Gabriel, Ballester Pablo, Deyà Pere M, Costa Antoni

机构信息

Departament de Química, Universitat de les Illes Balears, 07122 Palma de Mallorca, Illes Balears, Spain.

出版信息

J Org Chem. 2004 Apr 2;69(7):2302-8. doi: 10.1021/jo035546t.

Abstract

Secondary squaramides have considerable potential as hydrogen bond donors and acceptors. In CHCl(3) both, anti- and syn-squaramide rotamers are observed by NMR. The energetic barrier for anti/syn mutual interconversion determined by complete band shape analysis is approximately 63 kJ mol(-1). As in proline derivatives, a low rotational barrier is crucial for the design of foldable modules. In this paper, folding based on the low rotational barrier of squaramides is driven by donor atoms (N or O) located in the gamma position of an alkyl chain of a secondary squaramide. We demonstrate that the resulting minimal module exists as a folded conformer through the formation of a nine-membered ring stabilized by intramolecular hydrogen bonding. Molecular mechanics calculations and NMR studies support the existence of these folded conformers. The intramolecularly hydrogen bonded conformers are clearly visible even in CHCl(3)-EtOH mixtures. Folding occurs even in pure ethanol. As an indirect test, we studied the effectiveness of macrocyclization reactions in pure ethanol that require an effective templating effect to take place. The high yields obtained support the dominant role of a folded conformer even in this solvent.

摘要

二级方酰胺作为氢键供体和受体具有相当大的潜力。在CHCl₃中,通过核磁共振观察到了反式和顺式方酰胺旋转异构体。通过完整的能带形状分析确定的反式/顺式相互转化的能垒约为63 kJ/mol。与脯氨酸衍生物一样,低旋转势垒对于可折叠模块的设计至关重要。在本文中,基于方酰胺低旋转势垒的折叠是由位于二级方酰胺烷基链γ位的供体原子(N或O)驱动的。我们证明,通过形成由分子内氢键稳定的九元环,所得的最小模块以折叠构象存在。分子力学计算和核磁共振研究支持这些折叠构象的存在。即使在CHCl₃ - EtOH混合物中,分子内氢键结合的构象也清晰可见。甚至在纯乙醇中也会发生折叠。作为一项间接测试,我们研究了在纯乙醇中需要有效模板效应才能发生的大环化反应的有效性。获得的高产率支持了即使在这种溶剂中折叠构象的主导作用。

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