Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Am Chem Soc. 2010 Oct 27;132(42):14780-9. doi: 10.1021/ja1017877.
Helical structures of oligomers of non-natural β-amino acids are significantly stabilized by intramolecular hydrogen bonding between main-chain amide moieties in many cases, but the structures are generally susceptible to the environment; that is, helices may unfold in protic solvents such as water. For the generation of non-hydrogen-bonded ordered structures of amides (tertiary amides in most cases), control of cis-trans isomerization is crucial, even though there is only a small sterical difference with respect to cis and trans orientations. We have established methods for synthesis of conformationally constrained β-proline mimics, that is, bridgehead-substituted 7-azabicyclo[2.2.1]heptane-2-endo-carboxylic acids. Our crystallographic, 1D- and 2D-NMR, and CD spectroscopic studies in solution revealed that a bridgehead methoxymethyl substituent completely biased the cis-trans equilibrium to the cis-amide structure along the main chain, and helical structures based on the cis-amide linkage were generated independently of the number of residues, from the minimalist dimer through the tetramer, hexamer, and up to the octamer, and irrespective of the solvent (e.g., water, alcohol, halogenated solvents, and cyclohexane). Generality of the control of the amide equilibrium by bridgehead substitution was also examined.
在许多情况下,非天然β-氨基酸低聚物的螺旋结构通过主链酰胺部分之间的分子内氢键得到显著稳定,但这些结构通常易受环境影响;也就是说,在质子溶剂(如水)中,螺旋可能会展开。对于酰胺(大多数情况下为叔酰胺)的非氢键有序结构的生成,顺反异构化的控制至关重要,尽管顺式和反式取向之间只有很小的空间差异。我们已经建立了用于合成构象限制的β-脯氨酸类似物的方法,即桥环取代的 7-氮杂双环[2.2.1]庚烷-2-endo-羧酸。我们在溶液中的晶体学、1D 和 2D-NMR 和 CD 光谱研究表明,桥头甲氧基甲基取代基完全使顺反平衡偏向沿主链的顺式酰胺结构,基于顺式酰胺键的螺旋结构独立于残基数而产生,从小的二聚体到四聚体、六聚体,甚至到八聚体,并且与溶剂无关(例如水、醇、卤代溶剂和环己烷)。还检查了桥头取代对酰胺平衡的控制的普遍性。