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Chloroperoxidase production by Caldariomyces fumago biofilms

机译:产烟曲霉生物膜产生的过氧化物酶

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Chloroperoxidase (CPO) is a versatile enzyme, which is secreted by the marine fungus Caldariomyces fumago (Leptoxyphium fumago). However, the application of the enzyme is hampered by its high price, which is due to the costly, labor-intensive purification process. One challenge of the downstream process is the removal of a coproduced black pigment that forms a complex with the active enzyme. While strain development can be considered as an option to reduce the synthesis of the interfering pigment, the metabolism of the microorganism can be altered alternatively by using the biofilm growth mode of the fungus. The aim of this study was to reduce pigment formation during CPO synthesis. We investigated for the first time CPO production during C. fumago biofilm growth initiated through the presence of different microstructured stainless steel surfaces (material number: 1.4571; AISI 316Ti). CPO production by C. fumago was similar when grown as a biofilm or in suspension, whereas pigment formation was drastically reduced by cells grown on moderately structured surfaces (R-a = 0.13 +/- 0.02 mu m). The possibilities of biofilm growth for changing cell properties and for continuous fermentation are discussed.
机译:氯过氧化物酶(CPO)是一种多功能酶,由海洋真菌烟味Caldariomyces fumago(Leptoxyphium fumago)分泌。但是,由于价格高昂,劳动强度大的纯化过程,酶的价格高昂,阻碍了酶的应用。下游工艺的一个挑战是去除与活性酶形成复合物的共同生产的黑色素。虽然可以将菌株开发视为减少干扰色素合成的一种选择,但也可以通过使用真菌的生物膜生长模式来改变微生物的代谢。这项研究的目的是减少CPO合成过程中的色素形成。我们首次调查了烟熏衣原体生物膜生长过程中CPO的产生,这是由于存在不同的微结构化不锈钢表面(材料号:1.4571; AISI 316Ti)而引起的。当以生物膜或悬浮液形式生长时,C。fumago的CPO产生量相似,而通过在结构适中的表面上生长的细胞(R-a = 0.13 +/- 0.02μm),色素形成显着减少。讨论了改变细胞特性和连续发酵的生物膜生长的可能性。

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