遗传密码
蛋白质工程
背景(考古学)
计算生物学
定向进化
氨基酸
计算机科学
代谢工程
合成生物学
酶
生物
生物化学
基因
突变体
古生物学
作者
Hang-Qin Zhu,Xiaoling Tang,Ren‐Chao Zheng,Yu‐Guo Zheng
标识
DOI:10.1007/s11274-021-03177-1
摘要
With increased attention to excellent biocatalysts, evolving methods based on nature or unnatural amino acid (UAAs) mutagenesis have become an important part of enzyme engineering. The emergence of powerful method through expanding the genetic code allows to incorporate UAAs with unique chemical functionalities into proteins, endowing proteins with more structural and functional features. To date, over 200 diverse UAAs have been incorporated site-specifically into proteins via this methodology and many of them have been widely exploited in the field of enzyme engineering, making this genetic code expansion approach possible to be a promising tool for modulating the properties of enzymes. In this context, we focus on how this robust method to specifically incorporate UAAs into proteins and summarize their applications in enzyme engineering for tuning and expanding the functional properties of enzymes. Meanwhile, we aim to discuss how the benefits can be achieved by using the genetically encoded UAAs. We hope that this method will become an integral part of the field of enzyme engineering in the future.
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