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首页> 外文期刊>Applied Microbiology >300-Fold Increase in Production of the Zn2+-Dependent Dechlorinase TrzN in Soluble Form via Apoenzyme Stabilization
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300-Fold Increase in Production of the Zn2+-Dependent Dechlorinase TrzN in Soluble Form via Apoenzyme Stabilization

机译:通过脱辅酶稳定化可溶形式的Zn2 +依赖的脱氯酶TrzN的产量增加300倍

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Microbial metalloenzymes constitute a large library of biocatalysts, a number of which have already been shown to catalyze the breakdown of toxic chemicals or industrially relevant chemical transformations. However, while there is considerable interest in harnessing these catalysts for biotechnology, for many of the enzymes, their large-scale production in active, soluble form in recombinant systems is a significant barrier to their use. In this work, we demonstrate that as few as three mutations can result in a 300-fold increase in the expression of soluble TrzN, an enzyme from Arthrobacter aurescens with environmental applications that catalyzes the hydrolysis of triazine herbicides, in Escherichia coli . Using a combination of X-ray crystallography, kinetic analysis, and computational simulation, we show that the majority of the improvement in expression is due to stabilization of the apoenzyme rather than the metal ion-bound holoenzyme. This provides a structural and mechanistic explanation for the observation that many compensatory mutations can increase levels of soluble-protein production without increasing the stability of the final, active form of the enzyme. This study provides a molecular understanding of the importance of the stability of metal ion free states to the accumulation of soluble protein and shows that differences between apoenzyme and holoenzyme structures can result in mutations affecting the stability of either state differently.
机译:微生物金属酶构成了一个庞大的生物催化剂库,其中许多已被证明可催化有毒化学物质的分解或与工业相关的化学转化。然而,尽管对于将这些催化剂用于生物技术有很大的兴趣,但对于许多酶而言,它们在重组体系中以活性,可溶形式大量生产是其使用的重要障碍。在这项工作中,我们证明了少至三个突变可导致可溶性TrzN的表达增加300倍,可溶性TrzN是一种来自金黄色节杆菌的酶,在环境应用中可催化三嗪类除草剂在大肠杆菌中的水解。使用X射线晶体学,动力学分析和计算模拟的组合,我们表明表达的大部分改善是由于载脂酶而不是金属离子结合的全酶的稳定。这为观察结果提供了结构上和机理上的解释,即许多补偿性突变可以增加可溶性蛋白的产生水平,而不会增加酶的最终活性形式的稳定性。这项研究提供了对金属自由离子态稳定性对可溶性蛋白质积累重要性的分子理解,并显示脱辅酶和全酶结构之间的差异可能导致突变,从而分别影响任一态的稳定性。

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