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IgG样单特异性和双特异性合成抗体(SynAbs)的模块化化学构建

Modular Chemical Construction of IgG-like Mono- and Bispecific Synthetic Antibodies (SynAbs).

作者信息

Thoreau Fabien, Szijj Peter A, Greene Michelle K, Rochet Léa N C, Thanasi Ioanna A, Blayney Jaine K, Maruani Antoine, Baker James R, Scott Christopher J, Chudasama Vijay

机构信息

Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, U.K.

Patrick G Johnston Centre for Cancer Research, School of Medicine, Dentistry and Biomedical Sciences, Queen's University Belfast, Belfast BT9 7AEU.K.

出版信息

ACS Cent Sci. 2023 Feb 21;9(3):476-487. doi: 10.1021/acscentsci.2c01437. eCollection 2023 Mar 22.

Abstract

In recent years there has been rising interest in the field of protein-protein conjugation, especially related to bispecific antibodies (bsAbs) and their therapeutic applications. These constructs contain two paratopes capable of binding two distinct epitopes on target molecules and are thus able to perform complex biological functions (mechanisms of action) not available to monospecific mAbs. Traditionally these bsAbs have been constructed through protein engineering, but recently chemical methods for their construction have started to (re)emerge. While these have been shown to offer increased modularity, speed, and for some methods even the inherent capacity for further functionalization (e.g., with small molecule cargo), most of these approaches lacked the ability to include a fragment crystallizable (Fc) modality. The Fc component of IgG antibodies offers effector function and increased half-life. Here we report a first-in-class disulfide rebridging and click-chemistry-based method for the generation of Fc-containing, IgG-like mono- and bispecific antibodies. These are in the Fc-(Fab)-Fab format, i.e., two distinct Fabs and an Fc, potentially all from different antibodies, attached in a homogeneous and covalent manner. We have dubbed these molecules synthetic antibodies (SynAbs). We have constructed a T cell-engager (TCE) SynAb, Fc-(Fab)-Fab, and have confirmed that it exhibits the expected biological functions, including the ability to kill HER2 target cells in a coculture assay with T cells.

摘要

近年来,蛋白质-蛋白质偶联领域的关注度不断提高,尤其是与双特异性抗体(bsAbs)及其治疗应用相关的方面。这些构建体包含两个能够结合靶分子上两个不同表位的抗原结合位点,因此能够执行单特异性单克隆抗体无法实现的复杂生物学功能(作用机制)。传统上,这些双特异性抗体是通过蛋白质工程构建的,但最近用于其构建的化学方法开始(重新)出现。虽然这些方法已显示出更高的模块化、速度,并且对于某些方法甚至具有进一步功能化的内在能力(例如,与小分子货物结合),但大多数这些方法缺乏包含可结晶片段(Fc)模式的能力。IgG抗体的Fc成分具有效应功能并能延长半衰期。在此,我们报告了一种一流的基于二硫键重桥接和点击化学的方法,用于生成含Fc的、IgG样单特异性和双特异性抗体。这些抗体呈Fc-(Fab)-Fab形式,即两个不同的Fab和一个Fc,可能全部来自不同的抗体,以均匀且共价的方式连接。我们将这些分子称为合成抗体(SynAbs)。我们构建了一种T细胞衔接子(TCE)合成抗体Fc-(Fab)-Fab,并证实它具有预期的生物学功能,包括在与T细胞共培养试验中杀死HER2靶细胞的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca86/10037451/a55a5404b80c/oc2c01437_0001.jpg

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