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靶向CK2α/CK2β蛋白质-蛋白质相互作用的稳定且高度功能化肽的高效开发。

Efficient development of stable and highly functionalised peptides targeting the CK2α/CK2β protein-protein interaction.

作者信息

Iegre Jessica, Brear Paul, Baker David J, Tan Yaw Sing, Atkinson Eleanor L, Sore Hannah F, O' Donovan Daniel H, Verma Chandra S, Hyvönen Marko, Spring David R

机构信息

Department of Chemistry , University of Cambridge , Lensfield Road , CB2 1EW , Cambridge , UK . Email:

Department of Biochemistry , University of Cambridge , Tennis Court Road , CB2 1GA , Cambridge , UK . Email:

出版信息

Chem Sci. 2019 Apr 12;10(19):5056-5063. doi: 10.1039/c9sc00798a. eCollection 2019 May 21.

Abstract

The discovery of new Protein-Protein Interaction (PPI) modulators is currently limited by the difficulties associated with the design and synthesis of selective small molecule inhibitors. Peptides are a potential solution for disrupting PPIs; however, they typically suffer from poor stability and limited tissue penetration hampering their wide spread use as new chemical biology tools and potential therapeutics. In this work, a combination of CuAAC chemistry, molecular modelling, X-ray crystallography, and biological validation allowed us to develop highly functionalised peptide PPI inhibitors of the protein CK2. The lead peptide, , prevents the formation of the holoenzyme assembly , slows down proliferation, induces apoptosis in cancer cells and is stable in human serum. could aid the development of novel CK2 inhibitors acting at the interface and help to fully understand the intracellular pathways involving CK2. Importantly, the approach adopted herein could be applied to many PPI targets and has the potential to ease the study of PPIs by efficiently providing access to functionalised peptides.

摘要

新型蛋白质-蛋白质相互作用(PPI)调节剂的发现目前受到与选择性小分子抑制剂设计和合成相关困难的限制。肽是破坏PPI的一种潜在解决方案;然而,它们通常稳定性差且组织穿透力有限,阻碍了它们作为新型化学生物学工具和潜在治疗药物的广泛应用。在这项工作中,通过铜催化的叠氮-炔环加成反应(CuAAC)化学、分子建模、X射线晶体学和生物学验证相结合,我们得以开发出针对蛋白CK2的高度功能化肽PPI抑制剂。先导肽可防止全酶组装体的形成,减缓增殖,诱导癌细胞凋亡,并且在人血清中稳定。这有助于开发作用于界面的新型CK2抑制剂,并有助于全面了解涉及CK2的细胞内途径。重要的是,本文采用的方法可应用于许多PPI靶点,并有可能通过高效提供功能化肽来简化PPI的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31e6/6530537/d6df2a27aad6/c9sc00798a-f1.jpg

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