Department of Chemistry, Georgia State University, Atlanta, GA, 30303, USA.
Imperial College London, Du Cane Road, London, W12 0NN, UK.
Angew Chem Int Ed Engl. 2020 Nov 2;59(45):19825-19829. doi: 10.1002/anie.202001124. Epub 2020 Aug 31.
Historically, researchers have put considerable effort into developing automation systems to prepare natural biopolymers such as peptides and oligonucleotides. The availability of such mature systems has significantly advanced the development of natural science. Over the past twenty years, breakthroughs in automated synthesis of oligosaccharides have also been achieved. A machine-driven platform for glycopeptide synthesis by a reconstructed peptide synthesizer is described. The designed platform is based on the use of an amine-functionalized silica resin to facilitate the chemical synthesis of peptides in organic solvent as well as the enzymatic synthesis of glycan epitopes in the aqueous phase in a single reaction vessel. Both syntheses were performed by a peptide synthesizer in a semiautomated manner.
从历史上看,研究人员已经投入了相当大的努力来开发自动化系统,以制备天然生物聚合物,如肽和寡核苷酸。这些成熟系统的可用性极大地推动了自然科学的发展。在过去的二十年中,寡糖的自动化合成也取得了突破。描述了一种通过重构的肽合成仪驱动的糖肽合成机器平台。该设计平台基于使用胺功能化的硅胶树脂,以促进在有机溶剂中进行肽的化学合成以及在单个反应容器中在水相中进行聚糖表位的酶合成。这两种合成都是通过肽合成仪以半自动方式进行的。