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通过生化分析和生物信息数据分析鉴定和构建具有选择性或多特异性结合的强效环肽。

Identification and engineering of potent cyclic peptides with selective or promiscuous binding through biochemical profiling and bioinformatic data analysis.

作者信息

Smith Thomas P, Bhushan Bhaskar, Granata Daniele, Kaas Christian S, Andersen Birgitte, Decoene Klaas W, Ren Qiansheng, Liu Haimo, Qu Xinping, Yang Yang, Pan Jia, Chen Quijia, Münzel Martin, Kawamura Akane

机构信息

Chemistry - School of Natural and Environmental Sciences, Newcastle University, Newcastle upon Tyne NE1 7RU UK

Department of Chemistry, University of Oxford OX1 3TA UK.

出版信息

RSC Chem Biol. 2023 Nov 14;5(1):12-18. doi: 10.1039/d3cb00168g. eCollection 2024 Jan 3.

Abstract

As our understanding of biological systems grows, so does the need to selectively target individual or multiple members of specific protein families in order to probe their function. Many targets of current biological and pharmaceutical interest are part of a large family of closely related proteins and achieving ligand selectivity often remains either an elusive or time-consuming endeavour. Cyclic peptides (CPs) occupy a key niche in ligand space, able to achieve high affinity and selectivity while retaining synthetic accessibility. cyclic peptide ligands can be rapidly generated against a given target using mRNA display. In this study we harness mRNA display technology and the wealth of next generation sequencing (NGS) data generated to explore both experimental approaches and bioinformatic, statistical data analysis of peptide enrichment in cross-screen selections to rapidly generate high affinity CPs with differing intra-family protein selectivity profiles against fibroblast growth factor receptor (FGF-R) family proteins. Using these methods, CPs with distinct selectivity profiles can be generated which can serve as valuable tool compounds to decipher biological questions.

摘要

随着我们对生物系统的理解不断深入,为了探究特定蛋白质家族中单个或多个成员的功能,选择性靶向这些成员的需求也与日俱增。当前生物学和制药领域感兴趣的许多靶点都是一大类密切相关蛋白质家族的一部分,实现配体选择性通常仍然是一项难以捉摸或耗时的工作。环肽(CPs)在配体空间中占据关键位置,能够在保持合成可及性的同时实现高亲和力和选择性。使用mRNA展示技术,可以针对给定靶点快速生成环肽配体。在本研究中,我们利用mRNA展示技术以及所产生的大量下一代测序(NGS)数据,探索实验方法以及对交叉筛选选择中肽富集情况进行生物信息学和统计数据分析,以快速生成针对成纤维细胞生长因子受体(FGF-R)家族蛋白具有不同家族内蛋白选择性谱的高亲和力环肽。使用这些方法,可以生成具有不同选择性谱的环肽,这些环肽可作为有价值的工具化合物来解读生物学问题。

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