Carlier Paul R, Lam Polo C-H, Wong Dawn M
Department of Chemistry, Virginia Tech, Blacksburg, Virginia 24061, USA.
J Org Chem. 2002 Aug 23;67(17):6256-9. doi: 10.1021/jo025964i.
Tryptophan 1 (Trp) is superior to all other naturally occurring peptide residues in its ability to bind cations (the cation-pi interaction). In an effort to expand the toolbox of Trp-like amino acids, in this note we report catalytic asymmetric syntheses of Trp regioisomers 2a-e, where the alanine unit is attached not to C-3 of indole but to C-2, C-4, C-5, C-6, or C-7. Excellent asymmetric induction is obtained in each case (generally >97% ee). Ab initio calculations suggest that the indole nuclei of 2a-e will bind Na(+) with the same affinity as that of Trp.
色氨酸1(Trp)在结合阳离子的能力(阳离子-π相互作用)方面优于所有其他天然存在的肽残基。为了扩充类色氨酸氨基酸的工具库,在本报告中,我们报道了色氨酸区域异构体2a - e的催化不对称合成,其中丙氨酸单元连接在吲哚的C-2、C-4、C-5、C-6或C-7位,而非C-3位。在每种情况下都获得了出色的不对称诱导效果(通常ee值>97%)。从头算计算表明,2a - e的吲哚核与Na(+)结合的亲和力与色氨酸相同。