首页> 美国卫生研究院文献>Molecules >Integrated One-Pot Enrichment and Immobilization of Styrene Monooxygenase (StyA) Using SEPABEAD EC-EA and EC-Q1A Anion-Exchange Carriers
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Integrated One-Pot Enrichment and Immobilization of Styrene Monooxygenase (StyA) Using SEPABEAD EC-EA and EC-Q1A Anion-Exchange Carriers

机译:使用SEPABEAD EC-EA和EC-Q1A阴离子交换载体对苯乙烯单加氧酶(StyA)进行一体化一锅富集和固定化

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摘要

A straightforward one-pot procedure combining enrichment and immobilization of recombinantely expressed FADH2 dependent styrene monooxygenase (StyA) directly from Escherichia coli cell extracts was investigated. Sepabeads EC-EA and EC-Q1A anion-exchange carriers were employed to non-covalently adsorb StyA from the cell extracts depending on basic parameters such as varying initial protein concentrations and pH. The protein fraction of the cell extract contained around 25% StyA. At low initial protein concentrations (2.5 mg mL−1) and pH 6, the enzyme could be enriched up to 52.4% on Sepabeads EC-EA and up to 46.0% on Sepabeads EC-Q1A, accounting for an almost complete StyA adsorption from the cell extracts. Higher initial protein concentrations were necessary to exploit the high loading capacity of the beads. At 20 mg mL−1, up to 37.6% of the theoretical bead loading capacity could be utilized for StyA binding using Sepabeads EC-EA, and 34.0% using Sepabeads EC-Q1A. For both carriers, protein leakage under reaction conditions could be reduced to less than 2%. During assays, the FADH2 cofactor necessary for StyA activity was supplied by the NADH-FAD reductase component styrene monooxygenase B (StyB). StyA immobilized on Sepabeads EC-Q1A displayed twice as high styrene epoxidation rates (0.2 U mgStyA−1) as compared to Sepabeads EC-EA. This activity could be increased to 0.7 U mgStyA−1 by co-immobilizing StyB on Sepabeads EC-Q1A, which corresponds to 33% of the soluble StyA activity.
机译:研究了直接从大肠杆菌细胞提取物中富集和固定化重组表达的依赖FADH2的苯乙烯单加氧酶(StyA)的直接一锅法。 Sepabeads EC-EA和EC-Q1A阴离子交换载体被用于非共价吸附细胞提取物中的StyA,具体取决于诸如初始蛋白质浓度和pH值等基本参数。细胞提取物的蛋白质部分包含约25%的StyA。在较低的初始蛋白质浓度(2.5 mg mL -1 )和pH 6下,该酶在Sepabeads EC-EA上的富集度最高为52.4%,在Sepabeads EC-Q1A上的富集度为46.0%,占从细胞提取物中几乎完全吸收了StyA。为了利用珠子的高负载能力,需要较高的初始蛋白质浓度。在20 mg mL -1 下,使用Sepabeads EC-EA可以将高达37.6%的理论珠负载量用于StyA结合,而使用Sepabeads EC-Q1A可以将34.0%的理论珠负载量用于吸附。对于这两种载体,在反应条件下的蛋白质泄漏可以减少到小于2%。在测定过程中,StyA活性所需的FADH2辅因子由NADH-FAD还原酶组分苯乙烯单加氧酶B(StyB)提供。固定在Sepabeads EC-Q1A上的StyA的苯乙烯环氧化率(0.2 U mgStyA -1 )是Sepabeads EC-EA的两倍。通过将StyB共固定在Sepabeads EC-Q1A上,可以将该活性提高到0.7 U mgStyA -1 ,这相当于可溶性StyA活性的33%。

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