Xia Yiyin, Li Fupeng, Zhang Xiaohong, Balamkundu Seetharamsing, Tang Fan, Hu Side, Lescar Julien, Tam James P, Liu Chuan-Fa
School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore.
J Am Chem Soc. 2023 Mar 29;145(12):6838-6844. doi: 10.1021/jacs.2c13628. Epub 2023 Mar 16.
Enzymatic peptide ligation holds great promise in the study of protein functions and development of protein therapeutics. Owing to their high catalytic efficiency and a minimal tripeptide recognition motif, peptidyl asparaginyl ligases (PALs) are particularly useful tools for bioconjugation. However, as an inherent limitation of transpeptidases, PAL-mediated ligation is reversible, requiring a large excess of one of the ligation partners to shift the reaction equilibrium in the forward direction. Herein, we report a method to make PAL-mediated intermolecular ligation irreversible by coupling it to glutaminyl cyclase (QC)-catalyzed pyroglutamyl formation. In this method, the acyl donor substrate of PALs is designed to have glutamine at the P1' position of the Asn-P1'-P2' tripeptide PAL recognition motif. Upon ligation with an acyl acceptor substrate, the acyl donor substrate releases a leaving group in which the exposed N-terminal glutamine is cyclized by QC, quenching the Gln N-amine in a lactam. Using this method, PAL-mediated ligation can achieve near-quantitative yields even at an equal molar ratio between the two ligation partners. We have demonstrated this method for a wide range of applications, including protein-to-protein ligations. We anticipate that this cascade enzymatic reaction scheme will make PAL enzymes well suited for numerous new uses in biotechnology.
酶促肽连接在蛋白质功能研究和蛋白质治疗药物开发方面具有巨大潜力。由于其高催化效率和最小的三肽识别基序,肽基天冬酰胺连接酶(PALs)是生物共轭特别有用的工具。然而,作为转肽酶的一个固有局限性,PAL介导的连接是可逆的,需要大量过量的其中一个连接伙伴来使反应平衡正向移动。在此,我们报告一种通过将PAL介导的分子间连接与谷氨酰胺环化酶(QC)催化的焦谷氨酸形成偶联,使该连接不可逆的方法。在该方法中,PALs的酰基供体底物被设计为在天冬酰胺 - P1' - P2'三肽PAL识别基序的P1'位置具有谷氨酰胺。与酰基受体底物连接后,酰基供体底物释放一个离去基团,其中暴露的N端谷氨酰胺被QC环化,在内酰胺中淬灭谷氨酰胺的N - 胺。使用该方法,即使在两个连接伙伴之间的摩尔比相等时,PAL介导的连接也能实现接近定量的产率。我们已经证明了该方法在广泛应用中的可行性,包括蛋白质与蛋白质的连接。我们预计这种级联酶促反应方案将使PAL酶非常适合生物技术中的众多新用途。