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靶向小分子 G 蛋白 Cdc42 的肽类生物制剂的发现和成熟:针对 Ras 驱动信号的生物阻断。

The discovery and maturation of peptide biologics targeting the small G-protein Cdc42: A bioblockade for Ras-driven signaling.

机构信息

Department of Biochemistry, University of Cambridge, 80 Tennis Court Rd., Cambridge CB2 1GA, United Kingdom.

Isogenica Ltd., Chesterford Research Park, Little Chesterford, Essex CB10 1XL, United Kingdom.

出版信息

J Biol Chem. 2020 Feb 28;295(9):2866-2884. doi: 10.1074/jbc.RA119.010077. Epub 2020 Jan 20.

Abstract

Aberrant Ras signaling drives 30% of cancers, and inhibition of the Rho family small GTPase signaling has been shown to combat Ras-driven cancers. Here, we present the discovery of a 16-mer cyclic peptide that binds to Cdc42 with nanomolar affinity. Affinity maturation of this sequence has produced a panel of derived candidates with increased affinity and modulated specificity for other closely-related small GTPases. The structure of the tightest binding peptide was solved by NMR, and its binding site on Cdc42 was determined. Addition of a cell-penetrating sequence allowed the peptides to access the cell interior and engage with their target(s), modulating signaling pathways. In Ras-driven cancer cell models, the peptides have an inhibitory effect on proliferation and show suppression of both invasion and motility. As such, they represent promising candidates for Rho-family small GTPase inhibitors and therapeutics targeting Ras-driven cancers. Our data add to the growing literature demonstrating that peptides are establishing their place in the biologics arm of drug discovery.

摘要

异常的 Ras 信号驱动了 30%的癌症,而 Rho 家族小 GTPase 信号的抑制已被证明可以对抗 Ras 驱动的癌症。在这里,我们发现了一种与 Cdc42 具有纳摩尔亲和力的 16 肽环肽。对该序列的亲和力成熟产生了一组衍生候选物,它们具有更高的亲和力和针对其他密切相关的小 GTPase 的调节特异性。通过 NMR 解决了最紧密结合肽的结构,并确定了其在 Cdc42 上的结合位点。添加一个穿透细胞的序列允许肽进入细胞内部并与它们的靶标结合,调节信号通路。在 Ras 驱动的癌细胞模型中,这些肽对增殖有抑制作用,并显示出对侵袭和迁移的抑制作用。因此,它们是 Rho 家族小 GTPase 抑制剂和针对 Ras 驱动癌症的治疗剂的有前途的候选物。我们的数据增加了越来越多的文献,证明肽正在药物发现的生物制剂领域确立自己的地位。

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