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Functionalized Double Strain-Promoted Stapled Peptides for Inhibiting the p53-MDM2 Interaction

机译:功能化双应变促进的吻合肽抑制p53-MDM2相互作用。

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The Sondheimer dialkyne reagent has previously been employed in strain-promoted double-click cycloadditions with bis-azide peptides to generate stapled peptide inhibitors of protein–protein interactions. The substituted variants of the Sondheimer dialkyne can be used to generate functionalized stapled peptide inhibitors with improved biological properties; however, this remains a relatively underdeveloped field. Herein, we report the synthesis of new substituted variants of Sondheimer dialkyne and their application in the stapling of p53-based diazido peptides to generate potent stapled peptide-based inhibitors of the oncogenic p53-MDM2 interaction. The functionalized stapled peptide formed from a meta-fluoro-substituted Sondheimer dialkyne was found to be the most potent inhibitor. Furthermore, through experimental studies and density functional theory calculations, we investigated the impact of the substituent on the strain-promoted double-click reactivity of Sondheimer dialkyne.
机译:Sondheimer Dialkyne试剂先前已用于与双叠氮化物肽进行菌株促进的双击环加成反应,以生成蛋白质间相互作用的固定肽抑制剂。 Sondheimer Dialkyne的取代变体可用于产生生物学特性得到改善的功能化固定化短肽抑制剂。但是,这仍然是一个相对欠发达的领域。在此,我们报道了Sondheimer Dialkyne的新取代变体的合成及其在基于p53的重氮基肽的装订中的应用,以产生致癌的p53-MDM2相互作用的强力钉合肽基抑制剂。发现由间氟取代的Sondheimer二炔形成的功能化的固定肽是最有效的抑制剂。此外,通过实验研究和密度泛函理论计算,我们研究了取代基对Sondheimer Dialkyne菌株促进的双击反应的影响。

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