Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
Chem Commun (Camb). 2020 Mar 7;56(19):2917-2920. doi: 10.1039/c9cc09247a. Epub 2020 Feb 10.
Combinatorial cyclization of hundreds to thousands of random linear peptides by structurally diverse chemical linkers offers access to large macrocyclic compound libraries. A bottleneck in the development of such libraries is the preparation of large numbers of short random linear peptides. Herein, we present a tag-based strategy that is not dependent on a throughput-limiting chromatographic purification step and thus enables parallel production of short peptides. In brief, peptides are synthesized on solid phase as conjugates with a disulfide-linked Cys-Gly-Arg-Trp tetra-peptide tag. The charged arginine residue in the tag allows for purification of the peptides by diethyl ether-precipitation and the tryptophan allows for quantification of the product by absorption measurement. Addition of a reducing agent releases the short peptides from the tag. The released sulfhydryl group in the peptide can readily be used for cyclization of the peptide library with bis-electrophilic linker reagents.
通过结构多样的化学连接子对数百到数千个随机线性肽进行组合环化,可以获得大量的大环化合物文库。在这类文库的开发中,一个瓶颈是要制备大量的短随机线性肽。在此,我们提出了一种基于标签的策略,该策略不依赖于通量限制的色谱纯化步骤,因此能够并行生产短肽。简而言之,肽是作为带有二硫键连接的 Cys-Gly-Arg-Trp 四肽标签的缀合物在固相上合成的。标签中的带电荷的精氨酸残基允许通过乙醚沉淀来纯化肽,色氨酸允许通过吸收测量来定量产物。添加还原剂将短肽从标签上释放出来。肽中的巯基基团可以很容易地与双亲电连接子试剂一起用于环化肽文库。