Li Fang-Yi, Zhang Zhen-Feng, Voss Stephanie, Wu Yao-Wen, Zhao Yu-Fen, Li Yan-Mei, Chen Yong-Xiang
Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Department of Chemistry, Tsinghua University Beijing 100084 China
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences No. 1 West Beichen Road, Chaoyang District Beijing 100101 China.
Chem Sci. 2019 Dec 3;11(3):826-832. doi: 10.1039/c9sc04726c.
The association of K-Ras4B protein with plasma membrane (PM) is required for its signaling activity. Thus, direct inhibition of K-Ras4B-PM interaction could be a potential anti-Ras therapeutic strategy. However, it remains challenging to modulate such protein-PM interaction. Based on Ras isoform-specific PM microdomain localization patterns, we have developed a potent and isoform-selective peptide inhibitor, Memrasin, for detachment of K-Ras4B from the PM. Memrasin is one of the first direct inhibitors of K-Ras4B-PM interaction, and consists of a membrane l region-binding sequence derived from the C-terminal region of K-Ras4B and an endosome-escape enhancing motif that can aggregate on membrane. It forms peptide-enriched domains in the l region, abrogates the tethering of K-Ras4B to the PM and accordingly impairs Ras signaling activity, thereby efficiently decreasing the viability of several human lung cancer cells in a dose-responsive and K-Ras dependent manner. Memrasin provides a useful tool for exploring the biological function of K-Ras4B on or off the PM and a potential starting point for further development into anti-Ras therapeutics.
K-Ras4B蛋白与质膜(PM)的结合是其信号传导活性所必需的。因此,直接抑制K-Ras4B与质膜的相互作用可能是一种潜在的抗Ras治疗策略。然而,调节这种蛋白质与质膜的相互作用仍然具有挑战性。基于Ras亚型特异性的质膜微结构域定位模式,我们开发了一种强效且亚型选择性的肽抑制剂Memrasin,用于使K-Ras4B从质膜上脱离。Memrasin是首批直接抑制K-Ras4B与质膜相互作用的抑制剂之一,由源自K-Ras4B C末端区域的膜结合区域结合序列和可在膜上聚集的内体逃逸增强基序组成。它在膜结合区域形成富含肽的结构域,消除K-Ras4B与质膜的连接,从而损害Ras信号传导活性,进而以剂量反应和K-Ras依赖性方式有效降低几种人肺癌细胞的活力。Memrasin为探索K-Ras4B在质膜上或质膜外的生物学功能提供了有用的工具,也是进一步开发抗Ras治疗药物的潜在起点。