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卡氏酵母部分分泌组分析揭示了 CPO 辅底物 HO 的胞外生产,并为 CPO 和葡萄糖氧化酶的共生产提供了一个概念。

Partial secretome analysis of Caldariomyces fumago reveals extracellular production of the CPO co-substrate HO and provides a coproduction concept for CPO and glucose oxidase.

机构信息

Industrial Biotechnology, DECHEMA Research Institute, Theodor-Heuss-Allee 25, 60486, Frankfurt am Main, Germany.

出版信息

World J Microbiol Biotechnol. 2018 Jan 10;34(2):24. doi: 10.1007/s11274-017-2407-2.

Abstract

The culture supernatant of Caldariomyces fumago strains grown in a minimal medium with fructose contains mainly the biotechnologically relevant enzyme chloroperoxidase (CPO) and only minor amounts of other proteins. Our approach to identify the nature of these proteins via peptide mass fingerprinting and transcriptome analysis demonstrated the presence of putative glycosyl hydrolase and glucose oxidase (GOx) enzymes. These activities had been described earlier as parts of the fungus´ halogenation machinery, as they provide CPO with the co-substrate HO. The GOx activity was found to have a pH optimum of 5. Compared to the wild type values, GOx activity and glucose-driven MCD chlorination activity in the culture of a white mutant were found to be strongly increased to values of 1-2 U mL. As most CPO-catalyzed peroxidation reactions also show pH optima at around 5, the C. fumago culture supernatant can provide a highly convenient CPO/GOx source for many reactions with in situ HO production.

摘要

在以果糖为碳源的最小培养基中生长的虫草头孢菌的发酵液上清中主要含有具有生物技术相关性的酶——漆酶(CPO),而其它蛋白的含量则较少。我们通过肽质量指纹图谱和转录组分析来鉴定这些蛋白的性质,结果表明存在有潜在的糖苷水解酶和葡萄糖氧化酶(GOx)。这些酶的活性以前被描述为真菌卤化机制的一部分,因为它们为 CPO 提供了辅底物 HO。我们发现 GOx 的最适 pH 值为 5。与野生型相比,白色突变体培养物中的 GOx 活性和葡萄糖驱动的 MCD 氯化活性均显著增加,达到 1-2 U/mL。由于大多数 CPO 催化的过氧化物反应也在 pH 约 5 时表现出最佳活性,因此虫草头孢菌的发酵液上清可作为一种非常方便的 CPO/GOx 来源,用于许多原位 HO 生成的反应。

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