Tang Jiabao, Hao Mengling, Liu Junxian, Chen Yaling, Wufuer Gulimire, Zhu Jie, Zhang Xuejie, Zheng Tingquan, Fang Mujin, Zhang Shiyin, Li Tingdong, Ge Shengxiang, Zhang Jun, Xia Ningshao
State Key Laboratory of Vaccines for Infectious Diseases, School of Public Health, Xiamen University, 361102, Xiamen, China.
National Institute of Diagnostics and Vaccine Development in Infectious Diseases, School of Public Health, Xiamen University, 361102, Xiamen, China.
Commun Chem. 2024 Apr 18;7(1):87. doi: 10.1038/s42004-024-01173-8.
Asparaginyl ligases have been extensively utilized as valuable tools for site-specific bioconjugation or surface-modification. However, the application is hindered by the laborious and poorly reproducible preparation processes, unstable activity and ambiguous substrate requirements. To address these limitations, this study employed a structure-based rational approach to obtain a high-yield and high-activity protein ligase called OaAEP1-C247A-aa55-351. It was observed that OaAEP1-C247A-aa55-351 exhibits appreciable catalytic activities across a wide pH range, and the addition of the Fe metal ion effectively enhances the catalytic power. Importantly, this study provides insight into the recognition and nucleophile peptide profiles of OaAEP1-C247A-aa55-351. The ligase demonstrates a higher recognition ability for the "Asn-Ala-Leu" motif and an N-terminus "Arg-Leu" as nucleophiles, which significantly increases the reaction yield. Consequently, the catalytic activity of OaAEP1-C247A-aa55-351 with highly efficient recognition and nucleophile motif, "Asn-Ala-Leu" and "Arg-Leu" under the buffer containing Fe is 70-fold and 2-fold higher than previously reported OaAEP1-C247A and the most efficient butelase-1, respectively. Thus, the designed OaAEP1-C247A-aa55-351, with its highly efficient recognition and alternative nucleophile options, holds promising potential for applications in protein engineering, chemo-enzymatic modification, and the development of drugs.
天冬酰胺连接酶已被广泛用作位点特异性生物缀合或表面修饰的重要工具。然而,其应用受到制备过程繁琐且重复性差、活性不稳定以及底物要求不明确等因素的阻碍。为了解决这些限制,本研究采用基于结构的合理方法,获得了一种高产且高活性的蛋白质连接酶,称为OaAEP1-C247A-aa55-351。研究发现,OaAEP1-C247A-aa55-351在较宽的pH范围内均表现出可观的催化活性,添加铁金属离子可有效增强催化能力。重要的是,本研究深入了解了OaAEP1-C247A-aa55-351的识别和亲核肽谱。该连接酶对“Asn-Ala-Leu”基序以及作为亲核试剂的N端“Arg-Leu”表现出更高的识别能力,这显著提高了反应产率。因此,在含Fe的缓冲液中,具有高效识别和亲核基序“Asn-Ala-Leu”和“Arg-Leu”的OaAEP1-C247A-aa55-351的催化活性分别比先前报道的OaAEP1-C247A和最有效的Butelase-1高70倍和2倍。因此,设计的OaAEP1-C247A-aa55-351凭借其高效识别和替代亲核试剂选项,在蛋白质工程、化学酶修饰和药物开发中具有广阔的应用前景。