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StyA1 and StyA2B from Rhodococcus opacus 1CP: a Multifunctional Styrene Monooxygenase System▿

机译:来自不透明红球菌1CP的StyA1和StyA2B:多功能苯乙烯单加氧酶系统▿

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摘要

Two-component flavoprotein monooxygenases are emerging biocatalysts that generally consist of a monooxygenase and a reductase component. Here we show that Rhodococcus opacus 1CP encodes a multifunctional enantioselective flavoprotein monooxygenase system composed of a single styrene monooxygenase (SMO) (StyA1) and another styrene monooxygenase fused to an NADH-flavin oxidoreductase (StyA2B). StyA1 and StyA2B convert styrene and chemical analogues to the corresponding epoxides at the expense of FADH2 provided from StyA2B. The StyA1/StyA2B system presents the highest monooxygenase activity in an equimolar ratio of StyA1 and StyA2B, indicating (transient) protein complex formation. StyA1 is also active when FADH2 is supplied by StyB from Pseudomonas sp. VLB120 or PheA2 from Rhodococcus opacus 1CP. However, in both cases the reductase produces an excess of FADH2, resulting in a high waste of NADH. The epoxidation rate of StyA1 heavily depends on the type of reductase. This supports that the FADH2-induced activation of StyA1 requires interprotein communication. We conclude that the StyA1/StyA2B system represents a novel type of multifunctional flavoprotein monooxygenase. Its unique mechanism of cofactor utilization provides new opportunities for biotechnological applications and is highly relevant from a structural and evolutionary point of view.
机译:两组分黄素蛋白单加氧酶是新兴的生物催化剂,通常由单加氧酶和还原酶组分组成。在这里,我们显示不透明红球菌1CP编码多功能对映选择性黄素蛋白单加氧酶系统,该系统由单个苯乙烯单加氧酶(SMO)(StyA1)和与NADH-黄素氧化还原酶(StyA2B)融合的另一个苯乙烯单加氧酶组成。 StyA1和StyA2B将苯乙烯和化学类似物转化为相应的环氧化物,其代价是由StyA2B提供的FADH2。 StyA1 / StyA2B系统以等摩尔比例的StyA1和StyA2B呈现最高的单加氧酶活性,表明(瞬时)蛋白复合物形成。当StyB从假单胞菌sp。提供FADH2时,StyA1也有效。来自不透明红球菌1CP的VLB120或PheA2。然而,在两种情况下,还原酶均产生过量的FADH2,导致NADH的大量浪费。 StyA1的环氧化率在很大程度上取决于还原酶的类型。这支持FADH2诱导的StyA1激活需要蛋白间通讯。我们得出结论,StyA1 / StyA2B系统代表了一种新型的多功能黄素单加氧酶。它独特的辅因子利用机制为生物技术应用提供了新的机会,并且从结构和进化的角度来看,都具有重要意义。

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