英特因
劈理(地质)
重组DNA
化学
大肠杆菌
组氨酸
生物化学
组合化学
生物物理学
氨基酸
生物
基因
RNA剪接
断裂(地质)
核糖核酸
古生物学
作者
Zhanglin Lin,Qing Zhao,Xu Wang,Bihong Zhou,Lei Xing,Jiangyun Wang,Marco Pistolozzi,Lei Zhao,Tingting Wang
摘要
Abstract Inteins have been widely exploited for the purification of tagless proteins. Among them, pH‐inducible C‐terminal‐cleavage inteins enable the preparation of proteins and peptides with an authentic N‐terminus. However, a severe premature cleavage around neutral pH has limited the application of these inteins, especially when used in recombinant hosts such as Escherichia coli . By targeting the microenvironment of the two key histidine residues H429 and H439, we engineered Mtu ΔI‐CM intein to markedly reduce its premature cleavage. Kinetic analyses suggested that although the variants retained the pH dependence, they indeed cleaved slower, especially at pH 7.6. These variants resulted in higher yields for two model polypeptides than the original Mtu ΔI‐CM intein, when used in conjunction with a cleavable self‐assembling tag. This work suggests that more controllable pH‐inducible inteins can be obtained by manipulating the residues in the self‐cleavage sites and provide better performance for tag‐based protein preparation strategies.
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