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通过半胱氨酸桥接策略对生物大分子进行一般的双功能化修饰。

General dual functionalisation of biomacromolecules via a cysteine bridging strategy.

作者信息

Walsh Stephen J, Iegre Jessica, Seki Hikaru, Bargh Jonathan D, Sore Hannah F, Parker Jeremy S, Carroll Jason S, Spring David R

机构信息

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

Early Chemical Development, Pharmaceutical Development, R&D, AstraZeneca, Macclesfield, UK.

出版信息

Org Biomol Chem. 2020 Jun 10;18(22):4224-4230. doi: 10.1039/d0ob00907e.

Abstract

Site-selective modification of peptides and proteins has resulted in the development of a host of novel tools for the study of cellular systems or the synthesis of enhanced biotherapeutics. There is a need for useful methodologies that enable site-selective modification of native peptides or proteins, which is even more prevalent when modification of the biomolecule with multiple payloads is desired. Herein, we report the development of a novel dual functional divinylpyrimidine (dfDVP) platform that enables robust and modular modification of peptides, antibody fragments and antibodies. These biomacromolecules could be easily functionalised with a range of functional payloads (e.g. fluorescent dyes, cytotoxic warheads or cell-penetrating tags). Importantly, the dual functionalised peptides and antibodies demonstrated exquisite bioactivity in a range of in vitro cellular assays, showcasing the enhanced utility of these bioactive conjugates.

摘要

肽和蛋白质的位点选择性修饰已促成了一系列用于细胞系统研究或增强型生物治疗药物合成的新型工具的开发。需要有用的方法来实现天然肽或蛋白质的位点选择性修饰,当期望用多种有效载荷修饰生物分子时,这种需求更为普遍。在此,我们报告了一种新型双功能二乙烯基嘧啶(dfDVP)平台的开发,该平台能够对肽、抗体片段和抗体进行强大且模块化的修饰。这些生物大分子可以很容易地用一系列功能有效载荷(如荧光染料、细胞毒性弹头或细胞穿透标签)进行功能化。重要的是,双功能化的肽和抗体在一系列体外细胞试验中表现出优异的生物活性,展示了这些生物活性缀合物增强的实用性。

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