Department of Chemistry, Graduate School of Science, The University of Tokyo, Tokyo 113-0033, Japan.
Curr Opin Chem Biol. 2012 Apr;16(1-2):196-203. doi: 10.1016/j.cbpa.2012.02.014. Epub 2012 Mar 6.
Bioactive natural product peptides have diverse architectures such as non-standard sidechains and a macrocyclic backbone bearing modifications. In vitro translation of peptides bearing these features would provide the research community with a diverse collection of natural product peptide-like molecules with a potential for drug development. The ordinary in vitro translation system, however, is not amenable to the incorporation of non-proteinogenic amino acids or genetic encoding of macrocyclic backbones. To circumvent this problem, flexible tRNA-acylation ribozymes (flexizymes) were combined with a custom-made reconstituted translation system to produce the flexible in vitro translation (FIT) system. The FIT system was integrated with mRNA display to devise an in vitro selection technique, referred to as the random non-standard peptide integrated discovery (RaPID) system. It has recently yielded an N-methylated macrocyclic peptide having high affinity (Kd=0.60 nM) for its target protein, E6AP.
具有生物活性的天然产物肽具有多种结构,如非标准侧链和带有修饰的大环骨架。带有这些特征的肽的体外翻译将为研究界提供一系列具有潜在药物开发前景的天然产物类似肽分子。然而,普通的体外翻译系统不适于非蛋白氨基酸的掺入或大环骨架的遗传编码。为了解决这个问题,柔性 tRNA 酰化核酶(flexizymes)与定制的重组翻译系统相结合,产生了柔性体外翻译(FIT)系统。该 FIT 系统与 mRNA 展示相结合,设计了一种称为随机非标准肽综合发现(RaPID)系统的体外选择技术。最近,它产生了一种 N-甲基化的大环肽,对其靶蛋白 E6AP 具有高亲和力(Kd=0.60 nM)。