化学
肽
环肽
细胞穿透肽
细胞
生物化学
生物物理学
磁导率
细胞通透性
膜
生物
作者
Patrick G Dougherty,Jing Wen,Xiaoyan Pan,Amritendu Koley,Jian-Guo Ren,Ashweta Sahni,Ruchira Basu,Heba Salim,George Appiah Kubi,Ziqing Qian,Dehua Pei
标识
DOI:10.1021/acs.jmedchem.9b00456
摘要
Stapled peptides recapitulate the binding affinity and specificity of α-helices in proteins, resist proteolytic degradation, and may provide a novel modality against challenging drug targets such as protein-protein interactions. However, most of the stapled peptides have limited cell permeability or are impermeable to the cell membrane. We show herein that stapled peptides can be rendered highly cell-permeable by conjugating a cyclic cell-penetrating peptide to their N-terminus, C-terminus, or stapling unit. Application of this strategy to two previously reported membrane-impermeable peptidyl inhibitors against the MDM2/p53 and β-catenin/TCF interactions resulted in the generation of potent proof-of-concept antiproliferative agents against key therapeutic targets.
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