Stauffer Christina S, Datta Apurba
Department of Medicinal Chemistry, The University of Kansas, 1251 Wescoe Hall Drive, Lawrence, KS 66045, USA.
J Org Chem. 2008 Jun 6;73(11):4166-74. doi: 10.1021/jo8004815. Epub 2008 May 9.
Amipurimycin, a member of the complex peptidyl nucleoside family of antibiotics, is a Streptomyces-derived potent antifungal agent. The mechanism of action of amipurimycin, however, remains undetermined. Additionally, there are no reports on the total synthesis or structure-activity relationships (SAR) of this potentially useful bioactive compound. In a study aimed at the total synthesis and SAR studies of this natural product, the present research reports the development of a synthetic route to the central pyranosyl amino acid core of amipurimycin and its further elaboration, culminating in the synthesis of a unique thymine analogue. Utilizing a d-serine-derived dihydroaminopyrone as a strategic building block, the synthesis involves de novo construction of the fully functionalized C-3-branched carbohydrate amino acid core, followed by glycosidic attachment of thymine at C-1, and peptidic linking of the C-6 amine with the 1,2-aminocyclopentane carboxylic acid side chain.
氨普米星是复合肽基核苷类抗生素家族的一员,是一种源自链霉菌的强效抗真菌剂。然而,氨普米星的作用机制仍未确定。此外,关于这种潜在有用的生物活性化合物的全合成或构效关系(SAR)尚无报道。在一项旨在对该天然产物进行全合成和构效关系研究的实验中,本研究报告了一条合成路线的开发,该路线可合成氨普米星的中心吡喃糖基氨基酸核心,并对其进行进一步修饰,最终合成了一种独特的胸腺嘧啶类似物。该合成以d-丝氨酸衍生的二氢氨基吡喃酮为关键构建单元,从头构建完全功能化的C-3支链碳水化合物氨基酸核心,然后在C-1位进行胸腺嘧啶的糖苷连接,并将C-6胺与1,2-氨基环戊烷羧酸侧链进行肽连接。