Millward Steven W, Fiacco Stephen, Austin Ryan J, Roberts Richard W
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
ACS Chem Biol. 2007 Sep 21;2(9):625-34. doi: 10.1021/cb7001126.
There is a pressing need for new molecular tools to target protein surfaces with high affinity and specificity. Here, we describe cyclic messenger RNA display with a trillion-member covalent peptide macrocycle library. Using this library, we have designed a number of high-affinity, redox-insensitive, cyclic peptides that target the signaling protein G alpha i1. In addition to cyclization, our library construction took advantage of an expanded genetic code, utilizing nonsense suppression to insert N-methylphenylalanine as a 21st amino acid. The designed macrocycles exhibit several intriguing features. First, the core motif seen in all of the selected variants is the same and shares an identical context with respect to the macrocyclic scaffold, consistent with the idea that selection simultaneously optimizes both the cyclization chemistry and the structural placement of the binding epitope. Second, detailed characterization of one molecule, cyclic G alpha i binding peptide (cycGiBP), demonstrates substantially enhanced proteolytic stability relative to that of the parent linear molecule. Third and perhaps most important, the cycGiBP peptide binds the target with very high affinity ( K i approximately 2.1 nM), similar to those of many of the best monoclonal antibodies and higher than that of the betagamma heterodimer, an endogenous G alpha i1 ligand. Overall the work provides a general route to design novel, low-molecular-weight, high-affinity ligands that target protein surfaces.
迫切需要新的分子工具来以高亲和力和特异性靶向蛋白质表面。在此,我们描述了利用万亿成员共价肽大环文库进行的环状信使核糖核酸展示。使用该文库,我们设计了多种靶向信号蛋白Gαi1的高亲和力、对氧化还原不敏感的环状肽。除了环化之外,我们的文库构建利用了扩展遗传密码,通过无义抑制插入N-甲基苯丙氨酸作为第21种氨基酸。所设计的大环具有几个有趣的特征。首先,在所有选定变体中看到的核心基序是相同的,并且在大环支架方面具有相同的背景,这与选择同时优化环化化学和结合表位的结构位置的观点一致。其次,对一种分子环状Gαi结合肽(cycGiBP)的详细表征表明,其相对于亲本线性分子的蛋白水解稳定性大大增强。第三,也许也是最重要的一点,cycGiBP肽以非常高的亲和力(K i约为2.1 nM)结合靶标,这与许多最佳单克隆抗体的亲和力相似,且高于内源性Gαi1配体βγ异二聚体的亲和力。总体而言,这项工作为设计靶向蛋白质表面的新型低分子量高亲和力配体提供了一条通用途径。