Palomo C, Aizpurua J M, Ganboa I, Oiarbide M
Departamento de Química Orgánica, Facultad de Química, Universidad del País Vasco, San Sebastián, Spain.
Amino Acids. 1999;16(3-4):321-43. doi: 10.1007/BF01388175.
The potential of beta-lactams as intermediates for the access to alpha- and beta-amino acid-derived peptides is shortly reviewed, with major focus on the technologies developed in our group. The two general strategies lie, on one side, in the oxidative ring expansion of 3-hydroxy beta-lactams to N-carboxy alpha-amino acid anhydrides or Leuch's anhydrides and subsequent coupling with alpha-amino acid esters and, on the other side, in the nucleophilic ring opening of N-Boc-beta-lactams. Both approaches have been successfully applied to the synthesis of alpha,beta-diamino acid, alpha-amino-beta-hydroxy acid, polyhydroxylated alpha-amino acid, alpha,alpha-disubstituted alpha-amino acid, beta-amino acid, beta-amino-alpha-hydroxy acid and beta,beta-disubstituted beta-amino acid derived peptides. Because of the mild reaction conditions needed for the above transformations and the highly stereoselective procedures employed for the construction of the starting beta-lactam ring, the whole process allows the production of optically pure final products.
简要回顾了β-内酰胺作为用于合成α-和β-氨基酸衍生肽的中间体的潜力,主要聚焦于我们团队开发的技术。两种通用策略,一方面是将3-羟基β-内酰胺氧化扩环为N-羧基α-氨基酸酐或勒克酐,随后与α-氨基酸酯偶联;另一方面是N-Boc-β-内酰胺的亲核开环。这两种方法均已成功应用于合成α,β-二氨基酸、α-氨基-β-羟基酸、多羟基化α-氨基酸、α,α-二取代α-氨基酸、β-氨基酸、β-氨基-α-羟基酸和β,β-二取代β-氨基酸衍生的肽。由于上述转化所需的反应条件温和,且构建起始β-内酰胺环采用了高度立体选择性的方法,整个过程能够生产出光学纯的最终产物。