Le Grel Philippe, Salaün Arnaud, Potel Michel, Le Grel Barbara, Lassagne Fredéric
ICMV, UMR CNRS 6226, Université de Rennes I, 263 avenue du Général Leclerc 35042 Rennes Cedex, France.
J Org Chem. 2006 Jul 21;71(15):5638-45. doi: 10.1021/jo0608467.
Among pseudopeptidic foldamers, aza-beta3-peptides have the unique property to possess nitrogen stereocenters instead of carbon stereocenters. As the result of pyramidal inversion at N(alpha)-atoms along the backbone, they behave as a set of C8-based secondary structures in equilibrium. This structural modulation is exploited here to prepare 24-membered macrocycles with great efficiency. Both crystal structures and spectroscopic data establish that aza-beta3-cyclohexapeptides adopt a highly organized conformation where the relative configuration of chiral nitrogen atoms is alternated. This makes them an interesting scaffold as the stereocontrol occurs spontaneously through the cyclization. These compounds reveal an unprecedented slow pyramidal nitrogen inversion in macrocycles. Pyramidal ground state stabilization, hindered rotation, steric crowding, and H-bond cooperativity are proposed to participate in this striking phenomenon. The equilibrium between invertomers of aza-beta3-cyclohexapeptides is reminiscent of the interchange between the two chair forms of cyclohexane.
在拟肽折叠体中,氮杂-β3-肽具有独特的性质,即拥有氮立体中心而非碳立体中心。由于沿着主链的N(α)原子发生锥形翻转,它们表现为一组处于平衡状态的基于C8的二级结构。本文利用这种结构调制高效地制备了24元大环化合物。晶体结构和光谱数据均表明,氮杂-β3-环己肽采用高度有序的构象,其中手性氮原子的相对构型交替排列。这使得它们成为一种有趣的支架,因为立体控制通过环化自发发生。这些化合物揭示了大环中前所未有的缓慢锥形氮翻转。锥形基态稳定、受阻旋转、空间拥挤和氢键协同作用被认为参与了这一显著现象。氮杂-β3-环己肽对映异构体之间的平衡让人联想到环己烷两种椅式构象之间的互换。