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Non-competitive cyclic peptides for targeting enzyme–substrate complexes

机译:靶向酶-底物复合物的非竞争性环肽

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Affinity reagents are of central importance for selectively identifying proteins and investigating their interactions. We report on the development and use of cyclic peptides, identified by mRNA display-based RaPID methodology, that are selective for, and tight binders of, the human hypoxia inducible factor prolyl hydroxylases (PHDs) – enzymes crucial in hypoxia sensing. Biophysical analyses reveal the cyclic peptides to bind in a distinct site, away from the enzyme active site pocket, enabling conservation of substrate binding and catalysis. A biotinylated cyclic peptide captures not only the PHDs, but also their primary substrate hypoxia inducible factor HIF1-α. Our work highlights the potential for tight, non-active site binding cyclic peptides to act as promising affinity reagents for studying protein–protein interactions.
机译:亲和试剂对于选择性鉴定蛋白质和研究其相互作用至关重要。我们报告了环肽的开发和使用,该环肽是基于基于mRNA展示的RaPID方法确定的,对人缺氧诱导因子脯氨酰羟化酶(PHDs)(对缺氧感测至关重要的酶)具有选择性和紧密结合。生物物理分析表明,环肽可以在一个独特的位点结合,远离酶活性位点的口袋,从而可以保留底物的结合和催化作用。生物素化的环肽不仅捕获PHD,而且捕获其主要底物缺氧诱导因子HIF1-α。我们的工作强调了紧密的非活性位点结合环肽作为研究蛋白质与蛋白质相互作用的有希望的亲和试剂的潜力。

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