Australian Research Council Centre of Excellence for Innovations in Peptide and Protein Science, Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD, 4072, Australia.
Angew Chem Int Ed Engl. 2021 Feb 19;60(8):4004-4008. doi: 10.1002/anie.202013584. Epub 2020 Dec 29.
The use of enzymes for the site-specific modification of proteins/peptides has become a highly accessible, widespread approach to study protein/peptide functions or to generate therapeutic conjugates. Asparaginyl endopeptidases (AEPs) that preferentially catalyze transpeptidation reactions (AEP ligases) have emerged as enticing alternatives to established approaches, such as bacterial sortases, due to their catalytic efficiency and short tripeptide recognition motifs. However, under standard conditions, a substantial excess of the nucleophile to be conjugated is needed to reach desirable yields. Herein we report a versatile approach to shift the AEP-catalyzed transpeptidation equilibrium toward product formation via selectively quenching the nucleophilicity of the competing leaving-group peptide. Our metal-complexation-based strategy enables efficient peptide/protein labeling at the N- or C-terminus with near-equimolar concentrations of nucleophile label. Furthermore, we show that this approach can enhance protein-protein ligation and facilitate the formation of transpeptidation products that are otherwise unattainable.
酶在蛋白质/肽的定点修饰中的应用已经成为一种高度可及且广泛应用的方法,用于研究蛋白质/肽的功能或生成治疗性缀合物。优先催化转肽反应的天冬酰胺内肽酶(AEPs)(AEP 连接酶)因其催化效率和短三肽识别基序,已成为替代细菌 sortases 等现有方法的诱人选择。然而,在标准条件下,需要大量过量的待缀合亲核试剂才能达到理想的产率。在此,我们报告了一种通用的方法,通过选择性猝灭竞争离去基团肽的亲核性,将 AEP 催化的转肽平衡向产物形成转移。我们基于金属配合物的策略可实现肽/蛋白质在 N-或 C-末端的高效标记,亲核试剂标记的用量接近等摩尔浓度。此外,我们还表明,该方法可以增强蛋白质-蛋白质连接,并促进形成否则无法获得的转肽产物。