Yoon Ung Chan, Jin Ying Xue, Oh Sun Wha, Park Chan Hyo, Park Jong Hoon, Campana Charles F, Cai Xiaolu, Duesler Eileen N, Mariano Patrick S
Department of Chemistry, College of Natural Sciences, Pusan National University, Pusan 609-735, Korea.
J Am Chem Soc. 2003 Sep 3;125(35):10664-71. doi: 10.1021/ja030297b.
A novel method for the synthesis of cyclic peptide analogues has been developed. The general approach relies on the use of SET-promoted photocyclization reactions of peptides that contain N-terminal phthalimides as light absorbing electron acceptor moieties and C-terminal alpha-amidosilane or alpha-amidocarboxylate centers. Prototypical substrates are prepared by coupling preformed peptides with the acid chloride of N-phthalimidoglycine. Irradiation of these substrates results in the generation of cyclic peptide analogues in modest to good yields. The chemical efficiencies of these processes are not significantly affected by (1) the lengths of the peptide chains separating the phthalimide and alpha-amidosilane or alpha-amidocarboxylate centers and (2) the nature of the penultimate cation radical alpha-heterolytic fragmentation process (i.e., desilylation vs decarboxylation). An evaluation of the effects of N-alkyl substitution on the amide residues in the peptide chain showed that N-alkyl substitution does not have a major impact on the efficiencies of the photocyclization reactions but that it profoundly increases the stability of the cyclic peptide.
一种合成环肽类似物的新方法已经开发出来。通用方法依赖于使用含N-末端邻苯二甲酰亚胺作为吸光电子受体部分和C-末端α-氨基硅烷或α-酰胺基羧酸盐中心的肽的单电子转移促进的光环化反应。典型底物通过将预制肽与N-邻苯二甲酰亚氨基甘氨酸的酰氯偶联制备。这些底物的辐照导致以中等至良好的产率生成环肽类似物。这些过程的化学效率不受以下因素的显著影响:(1) 分隔邻苯二甲酰亚胺和α-氨基硅烷或α-酰胺基羧酸盐中心的肽链长度,以及 (2) 倒数第二个阳离子自由基α-异裂断裂过程的性质(即去甲硅烷基化与脱羧)。对肽链中酰胺残基上N-烷基取代效应的评估表明,N-烷基取代对光环化反应的效率没有重大影响,但它会显著提高环肽的稳定性。