School of Biological Sciences, Nanyang Technological University, Singapore 637551, Singapore.
Int J Mol Sci. 2021 Dec 31;23(1):458. doi: 10.3390/ijms23010458.
The last two decades have seen an increasing demand for new protein-modification methods from the biotech industry and biomedical research communities. Owing to their mild aqueous reaction conditions, enzymatic methods based on the use of peptide ligases are particularly desirable. In this regard, the recently discovered peptidyl Asx-specific ligases (PALs) have emerged as powerful biotechnological tools in recent years. However, as a new class of peptide ligases, their scope and application remain underexplored. Herein, we report the use of a new PAL, VyPAL2, for a diverse range of protein modifications. We successfully showed that VyPAL2 was an efficient biocatalyst for protein labelling, inter-protein ligation, and protein cyclization. The labelled or cyclized protein ligands remained functionally active in binding to their target receptors. We also demonstrated on-cell labelling of protein ligands pre-bound to cellular receptors and cell-surface engineering via modifying a covalently anchored peptide substrate pre-installed on cell-surface glycans. Together, these examples firmly establish Asx-specific ligases, such as VyPAL2, as the biocatalysts of the future for site-specific protein modification, with a myriad of applications in basic research and drug discovery.
过去二十年,生物技术产业和生物医学研究界对新型蛋白质修饰方法的需求日益增长。由于其温和的水相反应条件,基于肽连接酶使用的酶法尤其受到青睐。在这方面,最近发现的肽天冬氨酸特异性连接酶(PAL)近年来已成为强大的生物技术工具。然而,作为一类新型的肽连接酶,其范围和应用仍有待探索。在此,我们报告了一种新型 PAL,VyPAL2,在多种蛋白质修饰中的应用。我们成功地表明,VyPAL2 是一种有效的蛋白质标记、蛋白质连接和蛋白质环化的生物催化剂。标记或环化的蛋白质配体在与靶受体结合时仍然保持功能活性。我们还通过修饰预先安装在细胞表面糖上的共价锚定肽底物,展示了预先与细胞受体结合的蛋白质配体的细胞内标记和细胞表面工程。总之,这些例子有力地确立了天冬氨酸特异性连接酶(如 VyPAL2)作为未来用于定点蛋白质修饰的生物催化剂,在基础研究和药物发现中有无数的应用。