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首页> 外文期刊>Chemical science >Structural insights reveal a recognition feature for tailoring hydrocarbon stapled-peptides against the eukaryotic translation initiation factor 4E protein
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Structural insights reveal a recognition feature for tailoring hydrocarbon stapled-peptides against the eukaryotic translation initiation factor 4E protein

机译:结构上的见解揭示了识别针对碳氢键合肽针对真核翻译起始因子4E蛋白的识别功能

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Stapled-peptides have emerged as an exciting class of molecules which can modulate protein–protein interactions. We have used a structure-guided approach to rationally develop a set of hydrocarbon stapled-peptides with high binding affinities and residence times against the oncogenic eukaryotic translation initiation factor 4E (eIF4E) protein. Crystal structures of these peptides in complex with eIF4E show that they form specific interactions with a region on the protein-binding interface of eIF4E which is distinct from the other well-established canonical interactions. This recognition element is a major molecular determinant underlying the improved binding kinetics of these peptides with eIF4E. The interactions were further exploited by designing features in the peptides to attenuate disorder and increase helicity which collectively resulted in the generation of a distinct class of hydrocarbon stapled-peptides targeting eIF4E. This study details new insights into the molecular basis of stapled-peptide: eIF4E interactions and their exploitation to enhance promising lead molecules for the development of stapled-peptide compounds for oncology.
机译:短肽已成为一类激动人心的分子,可以调节蛋白质间的相互作用。我们已经使用了一种结构指导的方法来合理地开发出一套碳氢化合物短肽,该化合物对致癌性真核翻译起始因子4E(eIF4E)蛋白具有高结合亲和力和停留时间。这些肽与eIF4E形成复合物的晶体结构表明,它们与eIF4E的蛋白质结合界面上的区域形成了特异性相互作用,该区域不同于其他公认的典型相互作用。该识别元件是决定这些肽与eIF4E结合动力学改善的主要分子决定因素。通过设计肽中的特征来减弱相互作用和增加螺旋度,从而进一步利用了相互作用,这共同导致产生了针对eIF4E的独特类别的碳氢键合肽。这项研究详细介绍了缝钉肽的分子基础的新见解:eIF4E相互作用及其对增强有希望的前导分子以开发用于肿瘤学的缝钉肽化合物的作用。

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