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以SOS1为灵感设计的烃链稳定肽作为一种泛Ras抑制剂。

SOS1-inspired hydrocarbon-stapled peptide as a pan-Ras inhibitor.

作者信息

Li Anpeng, Li Xiang, Zou Jihua, Zhuo Xiaobin, Chen Shuai, Chai Xiaoyun, Gai Conghao, Xu Weiheng, Zhao Qingjie, Zou Yan

机构信息

School of Pharmacy, Naval Medical University, Shanghai, PR China; 92805 Military Hospital, Qingdao, PR China.

School of Pharmacy, Naval Medical University, Shanghai, PR China.

出版信息

Bioorg Chem. 2023 Jun;135:106500. doi: 10.1016/j.bioorg.2023.106500. Epub 2023 Mar 25.

Abstract

Blocking the interaction between Ras and Son of Sevenless homolog 1 (SOS1) has been an attractive therapeutic strategy for treating cancers involving oncogenic Ras mutations. K-Ras mutation is the most common in Ras-driven cancers, accounting for 86%, with N-Ras mutation and H-Ras mutation accounting for 11% and 3%, respectively. Here, we report the design and synthesis of a series of hydrocarbon-stapled peptides to mimic the alpha-helix of SOS1 as pan-Ras inhibitors. Among these stapled peptides, SSOSH-5 was identified to maintain a well-constrained alpha-helical structure and bind to H-Ras with high affinity. SSOSH-5 was furthermore validated to bind with Ras similarly to the parent linear peptide through structural modeling analysis. This optimized stapled peptide was proven to be capable of effectively inhibiting the proliferation of pan-Ras-mutated cancer cells and inducing apoptosis in a dose-dependent manner by modulating downstream kinase signaling. Of note, SSOSH-5 exhibited a high capability of crossing cell membranes and strong proteolytic resistance. We demonstrated that the peptide stapling strategy is a feasible approach for developing peptide-based pan-Ras inhibitors. Furthermore, we expect that SSOSH-5 can be further characterized and optimized for the treatment of Ras-driven cancers.

摘要

阻断Ras与七号less同源物1(SOS1)之间的相互作用一直是治疗涉及致癌Ras突变癌症的一种有吸引力的治疗策略。K-Ras突变在Ras驱动的癌症中最为常见,占86%,N-Ras突变和H-Ras突变分别占11%和3%。在此,我们报告了一系列烃链稳定肽的设计与合成,以模拟SOS1的α-螺旋作为泛Ras抑制剂。在这些链稳定肽中,SSOSH-5被鉴定为保持良好约束的α-螺旋结构并以高亲和力与H-Ras结合。通过结构建模分析进一步验证了SSOSH-5与亲本线性肽类似地与Ras结合。这种优化的链稳定肽被证明能够有效抑制泛Ras突变癌细胞的增殖,并通过调节下游激酶信号以剂量依赖的方式诱导细胞凋亡。值得注意的是,SSOSH-5表现出高跨细胞膜能力和强抗蛋白水解能力。我们证明了肽链稳定策略是开发基于肽的泛Ras抑制剂的一种可行方法。此外,我们期望SSOSH-5能够进一步表征和优化,用于治疗Ras驱动的癌症。

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