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Stabilization of microbial cytochrome P-450 activity by creation of station-phase conditions in a continuously operated immobilized-cell reactor.

机译:通过在连续运行的固定细胞反应器中产生站相条件来稳定微生物细胞色素P-450的活性。

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摘要

Bacillus megaterium (ATCC 13368) exhibits cytochrome P-450 monooxygenase activity (referred to herein as Cyt P-450 meg) catalyzing 15 beta-steroid hydroxylation. This activity belongs to the widespread ferredoxin reductase-ferredoxin-Cyt P-450 type of monooxygenases, providing a representative model system for this type of activity. The level of Cyt P-450 meg activity reaches its maximum in the cells during the stationary phase of the growth curve and is not affected by Cyt P-450 inducers. Here we present the development of an approach for stabilizing the Cyt P-450 meg system so that it performs continuous steroid hydroxylation and will be a model system for Cyt P-450-based detoxification. It is based on cell immobilization and simulation of stationary-phase conditions in a continuously operated fluidized-bed bioreactor. The combination of an appropriate immobilization technique, operational conditions, and medium composition provided a stabilized cell environment resulting in "freezing" of a physiological steady-state analog under stationary phase conditions, allowing stable performance of continuous hydroxylation for several weeks. It is suggested that this approach may be extended for use with other environmentally induced enzymatic activities.
机译:巨大芽孢杆菌(ATCC 13368)显示出催化15β-甾族羟基化的细胞色素P-450单加氧酶活性(本文称为Cyt P-450mcg)。该活性属于广泛的铁氧还蛋白还原酶-铁氧还蛋白-Cyt P-450型单加氧酶,为这种类型的活性提供了代表性的模型系统。 Cyt P-450 meg活性水平在生长曲线的稳定期达到最高,不受Cyt P-450诱导剂的影响。在这里,我们介绍一种稳定Cyt P-450 meg系统的方法的开发,以便它执行连续的类固醇羟化反应,并将成为基于Cyt P-450排毒的模型系统。它基于细胞固定和在连续运行的流化床生物反应器中模拟固定相条件。适当的固定技术,操作条件和培养基组成的组合提供了稳定的细胞环境,从而导致生理稳态类似物在固定相条件下“冻结”,从而使连续羟基化稳定进行了数周。建议该方法可扩展用于其他环境诱导的酶活性。

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