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Improving the Activity of Tryptophan Synthetase via a Nucleic Acid Scaffold

机译:通过核酸支架提高色氨酸合成酶的活性

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摘要

Tryptophan synthetase (TSase), which functions as a tetramer, is a typical enzyme with a substrate channel effect, and shows excellent performance in the production of non-standard amino acids, histamine, and other biological derivatives. Based on previous work, we fused a mutant CE protein (colistin of E. coli, a polypeptide with antibacterial activity) sequence with the sequence of TSase to explore whether its catalytic activity could be enhanced, and we also analyzed whether the addition of a DNA scaffold was a feasible strategy. Here, dCE (CE protein without DNase activity) protein tags were constructed and fused to the TrapA and TrapB subunits of TSase, and the whole cell was used for the catalytic reaction. The results showed that after the dCE protein tag was fused to the TrapB subunit, its whole cell catalytic activity increased by 50%. Next, the two subunits were expressed separately, and the proteins were bound in vitro to ensure equimolar combination between the two subunits. After the dCE label was fused to TrapB, the activity of TSase assembled with TrapA also improved. A series of experiments revealed that the enzyme fused with dCE9 showed higher activity than the wild-type protein. In general, the activity of assembly TSase was optimal when the temperature was 50 °C and the pH was about 9.0. After a long temperature treatment, the enzyme maintained good activity. With the addition of exogenous nucleic acid, the activity of the enzyme increased. The maximum yield was 0.58 g/L, which was almost three times that of the wild-type TSase (0.21 g/L). The recombinant TSase constructed in this study with dCE fusion had the advantages of higher heat resistance and higher activity, and confirmed the feasibility of adding a nucleic acid scaffold, providing a new idea for the improvement of structurally similar enzymes.
机译:色氨酸合成酶 (TSase) 作为四聚体,是一种典型的具有底物通道效应的酶,在非标准氨基酸、组胺和其他生物衍生物的生产中表现出优异的性能。基于以往的工作,我们将突变的 CE 蛋白 (大肠杆菌粘菌素,一种具有抗菌活性的多肽) 序列与 TSase 序列融合,以探索是否可以增强其催化活性,我们还分析了添加 DNA 支架是否是一种可行的策略。在这里,构建 dCE (没有 DNase 活性的 CE 蛋白) 蛋白标签并将其与 TSase 的 TrapA 和 TrapB 亚基融合,并将整个细胞用于催化反应。结果表明,dCE 蛋白标签与 TrapB 亚基融合后,其全细胞催化活性提高了 50%。接下来,分别表达两个亚基,并在体外结合蛋白质以确保两个亚基之间的等摩尔结合。dCE 标记与 TrapB 融合后,与 TrapA 组装的 TSase 活性也有所提高。一系列实验表明,与 dCE9 融合的酶显示出比野生型蛋白更高的活性。一般来说,组装 TSase 的活性在温度为 50 °C 且 pH 值为 9.0 左右时最佳。经过长时间的高温处理,酶保持了良好的活性。随着外源核酸的加入,酶的活性增加。最大产量为 0.58 g/L,几乎是野生型 TSase (0.21 g/L) 的三倍。本研究中采用 dCE 融合构建的重组 TSase 具有更高的耐热性和更高的活性等优点,并证实了添加核酸支架的可行性,为结构相似酶的改进提供了新思路。

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