Institute of Chemical Sciences and Engineering, School of Basic Sciences, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
ACS Chem Biol. 2022 Jan 21;17(1):181-186. doi: 10.1021/acschembio.1c00843. Epub 2022 Jan 11.
The synthesis of large numbers of cyclic peptides─required, for example, in screens for drug development─is currently limited by the need of chromatographic purification of individual peptides. Herein, we have developed a strategy in which cyclic peptides are released from the solid phase in the pure form and do not need purification. Peptides with an N-terminal thiol group are synthesized on the solid phase via a C-terminal disulfide linker, their sidechain-protecting groups are removed while the peptides remain on the solid phase, and the peptides are finally released via a cyclative mechanism by the addition of a base that deprotonates the N-terminal thiol group and triggers an intramolecular disulfide-exchange reaction. The method yields disulfide-cyclized peptides, a format on which many important peptide drugs such as oxytocin, vasopressin, and octreotide are based. We demonstrate that the method is applicable for facile synthesis in 96-well plates and allows for synthesis and screening of hundreds of cyclic peptides.
大量环状肽的合成——例如,在药物开发的筛选中需要——目前受到单个肽需要色谱纯化的限制。在此,我们开发了一种策略,其中环状肽以纯形式从固相中释放,并且不需要纯化。通过 C 端二硫键连接子在固相上合成具有 N 端巯基的肽,在肽仍保留在固相上的同时去除其侧链保护基团,最后通过添加使 N 端巯基去质子化并引发分子内二硫键交换反应的碱,通过环化机制释放肽。该方法得到二硫键环化的肽,许多重要的肽类药物,如催产素、加压素和奥曲肽,都是基于这种结构。我们证明该方法适用于 96 孔板中的简便合成,并允许合成和筛选数百种环状肽。