Vidya Ramdas, Eggen MariJean, Nair Sajiv K, Georg Gunda I, Himes Richard H
Department of Medicinal Chemistry and Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas 66045, USA.
J Org Chem. 2003 Dec 12;68(25):9687-93. doi: 10.1021/jo0302197.
An efficient and concise approach to the synthesis of the macrolide core of the cryptophycins has been developed. A novel macrolactonization utilizing a reactive acyl-beta-lactam intermediate incorporates the beta-amino acid moiety within the 16-membered macrolide core. This modular approach, involving a cyanide-initiated acyl-beta-lactam ring opening followed by cyclization, was successfully applied to the total synthesis of cryptophycin-24. The strategy was also used in an efficient synthesis of the 6,6-dimethyl-substituted dechlorocryptophycin-52. In this case, the cyanide-initiated ring opening of the bis-substituted 2-azetidinone followed by macrolactonization was achieved through a catalytic process.
已开发出一种高效且简洁的方法来合成隐藻素的大环内酯核心。一种利用反应性酰基-β-内酰胺中间体的新型大环内酯化反应将β-氨基酸部分纳入16元大环内酯核心中。这种模块化方法,包括氰化物引发的酰基-β-内酰胺开环随后环化,已成功应用于隐藻素-24的全合成。该策略还用于6,6-二甲基取代的脱氯隐藻素-52的高效合成。在这种情况下,双取代的2-氮杂环丁酮的氰化物引发的开环随后大环内酯化是通过催化过程实现的。