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Design of a recombinant asparaginyl ligase for site-specific modification using efficient recognition and nucleophile motifs

Biology

Design of a recombinant asparaginyl ligase for site-specific modification using efficient recognition and nucleophile motifs

J. Tang, M. Hao, et al.

This groundbreaking research by Jiabao Tang, Mengling Hao, Junxian Liu, Yaling Chen, Gulimire Wufuer, Jie Zhu, Xuejie Zhang, Tingquan Zheng, Mujin Fang, Shiyin Zhang, Tingdong Li, Shengxiang Ge, Jun Zhang, and Ningshao Xia introduces a high-performance asparaginyl ligase, OaAEP1-C247A-aa55-351, capable of efficient bioconjugation. With remarkable 70-fold enhanced activity, this innovation is set to revolutionize protein engineering and drug development across various pH levels.

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~3 min • Beginner • English
Abstract
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 Fe3+ 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 Fe3+ 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.
Publisher
Communications Chemistry
Published On
Apr 18, 2024
Authors
Jiabao Tang, Mengling Hao, Junxian Liu, Yaling Chen, Gulimire Wufuer, Jie Zhu, Xuejie Zhang, Tingquan Zheng, Mujin Fang, Shiyin Zhang, Tingdong Li, Shengxiang Ge, Jun Zhang, Ningshao Xia
Tags
asparaginyl ligases
bioconjugation
protein engineering
drug development
OaAEP1-C247A-aa55-351
catalytic activity
reaction yield
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