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The design, synthesis, and evolution of macrocyclic mRNA display libraries containing unnatural amino acids

机译:含有非天然氨基酸的大环mRNa展示文库的设计,合成和进化

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摘要

Combinatorial design is a powerful method for generating ligands that disrupt protein-protein interactions, particularly in the absence of structural information. mRNA display is powerful in vitro biological display technique that enables the synthesis and evolution of trillion-member peptide libraries. Previously, mRNA display libraries were limited to linear peptides composed entirely from natural (protegenic) amino acids. This work describes the redesign of mRNA display libraries to include chemical functionalities that hitherto have remained the province of traditional chemical libraries and natural products. The incorporation of unnatural (nonproteogenic) amino acids through nonsense suppression and selection for the unnatural chemical functionality demonstrated that suppression technologies were compatible with biological display. The incorporation of N-methylated amino acids by sequential sense suppression was shown to generate unnatural oligomers with improved proteolytic resistance. Post-translational macrocyclization was shown to be an effective and general strategy to constrain displayed peptides without the use of redox-labile disulfide bonds. Co-translational unnatural amino acid incorporation and post-translational macrocyclization were combined into a new technological platform and employed in the selection of a high-affinity cyclic ligand for G[alpha]i1. This new technology represents a significant step toward the evolution of natural product-like compounds from trillion-member combinatorial libraries.
机译:组合设计是一种强大的方法,可用于生成破坏蛋白质与蛋白质相互作用的配体,尤其是在缺乏结构信息的情况下。 mRNA展示是功能强大的体外生物展示技术,可合成和演化万亿成员的肽库。以前,mRNA展示文库仅限于完全由天然(蛋白质)氨基酸组成的线性肽。这项工作描述了mRNA显示文库的重新设计,以包括迄今仍是传统化学文库和天然产物所不及的化学功能。通过无意义的抑制并选择非天然化学功能而引入非天然(非蛋白原性)氨基酸表明,抑制技术与生物展示兼容。 N-甲基化氨基酸通过顺序有义抑制的掺入显示产生具有改善的蛋白水解抗性的非天然寡聚物。翻译后大环化被证明是不使用氧化还原不稳定的二硫键来约束展示的肽的有效且通用的策略。将共翻译非天然氨基酸掺入和翻译后大环化结合到新的技术平台中,并用于选择Gα11的高亲和力环状配体。这项新技术代表了从数万亿个组成的组合库向类似天然产物的化合物发展的重要一步。

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  • 作者

    Millward Steven Wesley;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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