Cho C Y, Moran E J, Cherry S R, Stephans J C, Fodor S P, Adams C L, Sundaram A, Jacobs J W, Schultz P G
Department of Chemistry, University of California, Berkeley 94720.
Science. 1993 Sep 3;261(5126):1303-5. doi: 10.1126/science.7689747.
A highly efficient method has been developed for the solid-phase synthesis of an "unnatural biopolymer" consisting of chiral aminocarbonate monomers linked via a carbamate backbone. Oligocarbamates were synthesized from N-protected p-nitrophenyl carbonate monomers, substituted with a variety of side chains, with greater than 99 percent overall coupling efficiencies per step. A spatially defined library of oligocarbamates was generated by using photochemical methods and screened for binding affinity to a monoclonal antibody. A number of high-affinity ligands were then synthesized and analyzed in solution with respect to their inhibition concentration values, water/octanol partitioning coefficients, and proteolytic stability. These and other unnatural polymers may provide new frameworks for drug development and for testing theories of protein and peptide folding and structure.
已开发出一种高效方法,用于通过氨基甲酸酯主链连接的手性氨基甲酸酯单体固相合成“非天然生物聚合物”。由N-保护的对硝基苯基碳酸酯单体合成了低聚氨基甲酸酯,这些单体被各种侧链取代,每步的总偶联效率大于99%。通过光化学方法生成了一个空间定义的低聚氨基甲酸酯文库,并筛选其与单克隆抗体的结合亲和力。然后合成了一些高亲和力配体,并在溶液中分析了它们的抑制浓度值、水/辛醇分配系数和蛋白水解稳定性。这些以及其他非天然聚合物可为药物开发以及测试蛋白质和肽折叠与结构的理论提供新的框架。