Bio-Rad AbD Serotec GmbH, Anna-Sigmund-Str. 5, 82061, Neuried, Germany.
Department of Molecular Biology, Massachusetts General Hospital, Boston, MA, USA.
Nat Commun. 2024 Jul 15;15(1):5939. doi: 10.1038/s41467-024-50296-y.
The precise regulation of protein function is essential in biological systems and a key goal in chemical biology and protein engineering. Here, we describe a straightforward method to engineer functional control into the isopeptide bond-forming SpyTag/SpyCatcher protein ligation system. First, we perform a cysteine scan of the structured region of SpyCatcher. Except for two known reactive and catalytic residues, none of these mutations abolish reactivity. In a second screening step, we modify the cysteines with disulfide bond-forming small molecules. Here we identify 8 positions at which modifications strongly inhibit reactivity. This inhibition can be reversed by reducing agents. We call such a reversibly inhibitable SpyCatcher "SpyLock". Using "BiLockCatcher", a genetic fusion of wild-type SpyCatcher and SpyLock, and SpyTagged antibody fragments, we generate bispecific antibodies in a single, scalable format, facilitating the screening of a large number of antibody combinations. We demonstrate this approach by screening anti-PD-1/anti-PD-L1 bispecific antibodies using a cellular reporter assay.
蛋白质功能的精确调控在生物系统中至关重要,也是化学生物学和蛋白质工程的主要目标。在这里,我们描述了一种将功能控制工程引入异肽键形成的 SpyTag/SpyCatcher 蛋白连接系统的简单方法。首先,我们对 SpyCatcher 的结构区域进行半胱氨酸扫描。除了两个已知的反应性和催化残基外,这些突变都没有使反应性完全丧失。在第二步筛选中,我们用形成二硫键的小分子修饰半胱氨酸。在此,我们确定了 8 个位置,其修饰强烈抑制反应性。还原剂可以逆转这种抑制。我们将这种可还原抑制的 SpyCatcher 称为“SpyLock”。使用野生型 SpyCatcher 和 SpyLock 的基因融合“BiLockCatcher”和 Spy 标记的抗体片段,我们以一种单一、可扩展的格式生成双特异性抗体,从而便于筛选大量的抗体组合。我们通过使用细胞报告测定法筛选抗 PD-1/抗 PD-L1 双特异性抗体来证明这种方法。