Department of Chemistry, School of Science Westlake University, Hangzhou, 310030, Zhejiang Province, China.
Institute of Natural Sciences, Westlake Institute for Advanced Study, Hangzhou, 310024, Zhejiang Province, China.
Chemistry. 2024 Sep 25;30(54):e202401961. doi: 10.1002/chem.202401961. Epub 2024 Sep 12.
Sortase-mediated ligation (SML) is a widely used method for peptide and protein ligation due to ease of substrate preparation and fast enzymatic kinetics. But there are drawbacks that limit broader applications. Sorting motif in substrates may not be exposed to sortase efficiently due to folding or aggregation. In addition, the ligation is reversible under transpeptidation equilibrium that restricts ligation yield. Here we report a simple but robust method to overcome such limitations. By employment of sarkosyl, the detergent alters substrate conformation to raise sorting motif accessibility for sortase catalysis. Moreover, transpeptidation becomes irreversible presumably by formation of micelle to shield ligation products from sortase. In consequence, excellent yields were achieved from sortase variants with different substrate specificity. Notably, this method is compatible with peptides or proteins capable of forming liquid-liquid phase separation (LLPS), presenting a powerful approach for the conjugation of aggregation-prone substrates. Therefore, we believe the sarkosyl-enhanced SML could be widely applied in peptide and protein chemistry and the unique irreversible transpeptidation mechanism offers an insight to detergent-driven equilibrium.
Sortase 介导的连接 (SML) 由于底物制备简单和酶促动力学快速,是一种广泛用于肽和蛋白质连接的方法。但由于折叠或聚集,底物中的分拣基序可能无法有效地暴露给 Sortase。此外,转肽平衡会使连接可逆,从而限制连接产率。在这里,我们报告了一种简单但强大的方法来克服这些限制。通过使用十二烷基肌氨酸钠,去污剂改变了底物构象,提高了分拣基序对 Sortase 催化的可及性。此外,转肽反应可能由于胶束的形成而变得不可逆,从而将连接产物从 Sortase 中屏蔽。因此,不同底物特异性的 Sortase 变体都能获得优异的产率。值得注意的是,该方法与能够形成液-液相分离 (LLPS) 的肽或蛋白质兼容,为易于聚集的底物的连接提供了一种强大的方法。因此,我们相信增强型 SML 可以广泛应用于肽和蛋白质化学领域,而独特的不可逆转肽反应机制为去污剂驱动的平衡提供了新的见解。