Fraunhofer Institute for Molecular Biology and Applied Ecology, Forckenbeckstrasse 6, 52074 Aachen, Germany.
Bioconjug Chem. 2009 May 20;20(5):1010-5. doi: 10.1021/bc9000257.
Recombinant antibodies are promising tools for a wide range of bioanalytical and medical applications. However, the chemical modification of such molecules can be challenging, which limits their broader utilization. Here we describe a universal method for the site-specific labeling of antibody fragments and protein ligands by genetically fusing them to an engineered version of the human DNA-repair enzyme O(6)-alkyllguanine DNA alkyltransferase (AGT), known as SNAP-Tag (1-3) . Substrates containing O(6)-benzylguanine are covalently bound to the fusion proteins via a stable thioether bond in a rapid and highly specific self-labeling reaction. The coupling is site-directed, allowing the design and synthesis of antibody conjugates with predefined stoichiometry. We cloned a series of ligand SNAP-Tag fusion proteins and expressed them in HEK 293T cells. The antibody/ligand-fusions were characterized by labeling with different fluorophores, labeling with biotin, or by coupling them to fluorescent nanobeads, followed by analysis by flow cytometry and confocal microscopy. All ligands retained their original antigen-binding properties when fused to the SNAP-Tag. The combination of recombinant antibodies or protein ligands with the SNAP-Tag facilitates simple and efficient covalent modification with a broad range of substrates, thus providing a useful and advantageous alternative to existing coupling strategies.
重组抗体是广泛应用于生物分析和医学领域的有前途的工具。然而,这些分子的化学修饰可能具有挑战性,这限制了它们更广泛的应用。在这里,我们描述了一种通过将抗体片段和蛋白配体基因融合到一种经过工程改造的人类 DNA 修复酶 O(6)-烷化鸟嘌呤 DNA 烷基转移酶 (AGT) (称为 SNAP-Tag(1-3))的通用方法,实现对抗体片段和蛋白配体的定点标记。含有 O(6)-苄基鸟嘌呤的底物通过稳定的硫醚键与融合蛋白共价结合,发生快速且高度特异性的自标记反应。这种偶联是定点的,允许设计和合成具有预定化学计量的抗体缀合物。我们克隆了一系列配体 SNAP-Tag 融合蛋白,并在 HEK 293T 细胞中表达。通过用不同的荧光团标记、用生物素标记或通过将它们偶联到荧光纳米珠上,然后通过流式细胞术和共聚焦显微镜进行分析,对抗体/配体融合物进行了表征。当与 SNAP-Tag 融合时,所有配体都保留了它们原有的抗原结合特性。重组抗体或蛋白配体与 SNAP-Tag 的结合,便于与广泛的底物进行简单有效的共价修饰,因此为现有的偶联策略提供了一种有用且有利的替代方法。