Engineered protein G variants for multifunctional antibody-based assemblies.

IF 5.2 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Protein Science Pub Date : 2025-02-01 DOI:10.1002/pro.70019
Tomasz Slezak, Kelly M O'Leary, Jinyang Li, Ahmed Rohaim, Elena K Davydova, Anthony A Kossiakoff
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Abstract

We have developed a portfolio of antibody-based modules that can be prefabricated as standalone units and snapped together in plug-and-play fashion to create uniquely powerful multifunctional assemblies. The basic building blocks are derived from multiple pairs of native and modified Fab scaffolds and protein G (PG) variants engineered by phage display to introduce high pair-wise specificity. The variety of possible Fab-PG pairings provides a highly orthogonal system that can be exploited to perform challenging cell biology operations in a straightforward manner. The simplest manifestation allows multiplexed antigen detection using PG variants fused to fluorescently labeled SNAP-tags. Moreover, Fabs can be readily attached to a PG-Fc dimer module which acts as the core unit to produce plug-and-play IgG-like assemblies, and the utility can be further expanded to produce bispecific analogs using the "knobs into holes" strategy. These core PG-Fc dimer modules can be made and stored in bulk to produce off-the-shelf customized IgG entities in minutes, not days or weeks by just adding a Fab with the desired antigen specificity. In another application, the bispecific modalities form the building block for fabricating potent bispecific T-cell engagers (BiTEs), demonstrating their efficacy in cancer cell-killing assays. Additionally, the system can be adapted to include commercial antibodies as building blocks, greatly increasing the target space. Crystal structure analysis reveals that a few strategically positioned interactions engender the specificity between the Fab-PG variant pairs, requiring minimal changes to match the scaffolds for different possible combinations. This plug-and-play platform offers a user-friendly and versatile approach to enhance the functionality of antibody-based reagents in cell biology research.

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基于多功能抗体组装的工程蛋白G变体。
我们开发了一系列基于抗体的模块,这些模块可以作为独立单元预制,并以即插即用的方式连接在一起,以创建独特的强大多功能组件。基本构建模块来源于多对天然和修饰的Fab支架和蛋白质G (PG)变体,通过噬菌体展示来引入高成对特异性。各种可能的Fab-PG配对提供了一个高度正交的系统,可以利用它以直接的方式执行具有挑战性的细胞生物学操作。最简单的表现允许使用PG变体融合到荧光标记的snap标签进行多路抗原检测。此外,晶圆片可以很容易地连接到PG-Fc二聚体模块上,该模块作为核心单元来生产即插即用的类igg组件,并且该实用程序可以进一步扩展到使用“旋钮入孔”策略来生产双特异性类似物。这些核心PG-Fc二聚体模块可以批量制造和存储,只需添加具有所需抗原特异性的Fab,即可在几分钟内生产现成的定制IgG实体,而不是几天或几周。在另一个应用中,双特异性模式构成了制造强效双特异性t细胞接合物(BiTEs)的基石,证明了它们在癌细胞杀伤试验中的有效性。此外,该系统可以适应包括商业抗体作为构建块,大大增加目标空间。晶体结构分析表明,一些有策略定位的相互作用产生了Fab-PG变异对之间的特异性,需要最小的变化来匹配不同可能组合的支架。这个即插即用的平台提供了一种用户友好和通用的方法来增强细胞生物学研究中基于抗体的试剂的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Protein Science
Protein Science 生物-生化与分子生物学
CiteScore
12.40
自引率
1.20%
发文量
246
审稿时长
1 months
期刊介绍: Protein Science, the flagship journal of The Protein Society, is a publication that focuses on advancing fundamental knowledge in the field of protein molecules. The journal welcomes original reports and review articles that contribute to our understanding of protein function, structure, folding, design, and evolution. Additionally, Protein Science encourages papers that explore the applications of protein science in various areas such as therapeutics, protein-based biomaterials, bionanotechnology, synthetic biology, and bioelectronics. The journal accepts manuscript submissions in any suitable format for review, with the requirement of converting the manuscript to journal-style format only upon acceptance for publication. Protein Science is indexed and abstracted in numerous databases, including the Agricultural & Environmental Science Database (ProQuest), Biological Science Database (ProQuest), CAS: Chemical Abstracts Service (ACS), Embase (Elsevier), Health & Medical Collection (ProQuest), Health Research Premium Collection (ProQuest), Materials Science & Engineering Database (ProQuest), MEDLINE/PubMed (NLM), Natural Science Collection (ProQuest), and SciTech Premium Collection (ProQuest).
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