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Stabilization of the Reductase Domain in the Catalytically Self-Sufficient Cytochrome P450BM3 by Consensus-Guided Mutagenesis

机译:共识指导诱变的催化自给自足的细胞色素P450BM3中的还原酶结构域的稳定化。

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摘要

The multidomain, catalytically self-sufficient cytochrome P450 BM-3 from Bacillus megaterium (P450BM3) constitutes a versatile enzyme for the oxyfunctionalization of organic molecules and natural products. However, the limited stability of the diflavin reductase domain limits the utility of this enzyme for synthetic applications. In this work, a consensus-guided mutagenesis approach was applied to enhance the thermal stability of the reductase domain of P450BM3. Upon phylogenetic analysis of a set of distantly related P450s (>38 % identity), a total of 14 amino acid substitutions were identified and evaluated in terms of their stabilizing effects relative to the wild-type reductase domain. Recombination of the six most stabilizing mutations generated two thermostable variants featuring up to tenfold longer half-lives at 50°C and increased catalytic performance at elevated temperatures. Further characterization of the engineered P450BM3 variants indicated that the introduced mutations increased the thermal stability of the FAD-binding domain and that the optimal temperature (Topt) of the enzyme had shifted from 25 to 40°C. This work demonstrates the effectiveness of consensus mutagenesis for enhancing the stability of the reductase component of a multidomain P450. The stabilized P450BM3 variants developed here could potentially provide more robust scaffolds for the engineering of oxidation biocatalysts.
机译:巨大芽孢杆菌(P450BM3)的多域催化自给自足的细胞色素P450 BM-3(P450BM3)构成了一种用于有机分子和天然产物的氧官能化的多功能酶。但是,二黄素还原酶结构域的有限稳定性限制了该酶在合成应用中的实用性。在这项工作中,采用共识指导的诱变方法来增强P450BM3还原酶结构域的热稳定性。在对一组远缘相关的P450(> 38%同源性)进行系统发育分析时,总共鉴定了14个氨基酸取代并根据其相对于野生型还原酶结构域的稳定作用进行了评估。六个最稳定突变的重组产生了两个热稳定的变体,在50°C时半衰期延长了十倍,并且在高温下催化性能增强。工程化的P450BM3变体的进一步表征表明,引入的突变增加了FAD结合域的热稳定性,并且酶的最佳温度(Topt)从25°C转变为40°C。这项工作证明了共识诱变对于增强多域P450还原酶组分的稳定性的有效性。在这里开发的稳定化的P450BM3变体可能为氧化生物催化剂的工程设计提供更坚固的支架。

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