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首页> 外文期刊>Journal of Medicinal Chemistry >Design of High-Affinity Stapled Peptides To Target the Repressor Activator Protein 1 (RAP1)/Telomeric Repeat-Binding Factor 2 (TRF2) Protein-Protein Interaction in the Shelterin Complex
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Design of High-Affinity Stapled Peptides To Target the Repressor Activator Protein 1 (RAP1)/Telomeric Repeat-Binding Factor 2 (TRF2) Protein-Protein Interaction in the Shelterin Complex

机译:靶向Shelterin复合物中阻遏物激活蛋白1(RAP1)/端粒重复结合因子2(TRF2)蛋白-蛋白质相互作用的高亲和性吻合肽的设计。

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摘要

Shelterin, a six-protein complex, plays a fundamental role in protecting both the length and the stability of telomeres. Repressor activator protein 1 (RAP1) and telomeric repeat-binding factor 2 (TRF2) are two subunits in shelterin that interact with each other. Small-molecule inhibitors that block the RAP1/TRF2 protein-protein interaction can disrupt the structure of shelterin and may be employed as pharmacological tools to investigate the biology of shelterin. On the basis of the cocrystal structure of RAP1/TRF2 complex, we have developed first-in-class triazole-stapled peptides that block the protein-protein interaction between RAP1 and TRF2. Our most potent stapled peptide binds to RAP1 protein with a K-i value of 7 nM and is >100 times more potent than the corresponding wild-type TRF2 peptide. On the basis of our high-affinity peptides, we have developed and optimized a competitive, fluorescence polarization (FP) assay for accurate and rapid determination of the binding affinities of our designed compounds and this assay may also assist in the discovery of non-peptide, small-molecule inhibitors capable of blocking the RAP1/TRF2 protein-protein interaction.
机译:Shelterin是一种六蛋白复合物,在保护端粒的长度和稳定性方面起着基本作用。阻遏物激活蛋白1(RAP1)和端粒重复结合因子2(TRF2)是庇护素中彼此相互作用的两个亚基。阻断RAP1 / TRF2蛋白质相互作用的小分子抑制剂可以破坏胶体蛋白的结构,可以用作研究胶体蛋白生物学的药理学工具。基于RAP1 / TRF2复合物的共晶体结构,我们开发了一流的三唑修饰肽,可阻断RAP1和TRF2之间的蛋白质相互作用。我们最有效的装订肽以7nM的K-i值结合RAP1蛋白,并且其效力比相应的野生型TRF2肽强100倍以上。基于我们的高亲和力肽段,我们开发并优化了竞争性荧光偏振(FP)测定法,可准确快速地确定设计化合物的结合亲和力,该测定法也可能有助于发现非肽,能够阻止RAP1 / TRF2蛋白质与蛋白质相互作用的小分子抑制剂。

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