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Characterisation of a monooxygenase in Shiraia bambusicola.

机译:Shimia bambusicola中单加氧酶的表征。

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A monooxygenase-encoding gene (Mono) is located in the hypocrellin gene cluster of Shiraia sp. SUPER-H168 and was targeted by a clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 system. The ΔMono mutant abolished hypocrellin production, whereas the ΔMono complement mutant restored hypocrellin production. Relative expression levels of the Mono and its adjacent genes were abolished in the ΔMono mutant compared with the wild-type strain. These results indicate the essential role of Mono in hypocrellin biosynthesis. The Mono gene of Shiraia bambusicola was further expressed in Pichia pastoris and salicylate monooxygenase activity was detected, which suggested that this monooxygenase has the ability to catalyse decarboxylative hydroxylation. The relative growth ratio of the ΔMono mutant was significantly improved compared with the wild-type strain. In contrast to the wild-type strain, the ΔMono mutant also represented excellent oxidative stress tolerance after exposure to high concentrations of H2O2 (16?mM) based on the increasing activities of superoxide dismutase, catalase, and glutathione peroxidase. These results suggest that ΔMono mutants could be used as microbial cell factories to produce metabolites that will cause oxidative stress. This study also enhances our understanding of hypocrellin biosynthesis and opens an avenue for decoding the hypocrellin pathway.
机译:编码单加氧酶的基因(Mono)位于Shiraia sp。 SUPER-H168被靶向的簇状规则间隔的短回文重复序列(CRISPR)/ Cas9系统靶向。 ΔMono突变体废除了hypercrellin的产生,而ΔMono补体突变体则恢复了hypercrellin的产生。与野生型菌株相比,ΔMono突变体中Mono及其相邻基因的相对表达水平被取消。这些结果表明Mono在降乳素生物合成中的重要作用。 Shimia bambusicola的Mono基因在巴斯德毕赤酵母中进一步表达,并检测到水杨酸单加氧酶的活性,这表明该单加氧酶具有催化脱羧羟基化的能力。与野生型菌株相比,ΔMono突变体的相对生长率显着提高。与野生型菌株相反,由于超氧化物歧化酶,过氧化氢酶和谷胱甘肽过氧化物酶的活性增加,ΔMono突变体在暴露于高浓度H2O2(16?mM)后也表现出优异的氧化应激耐受性。这些结果表明,ΔMono突变体可以用作微生物细胞工厂,以产生将引起氧化应激的代谢产物。这项研究还增强了我们对降乳素生物合成的理解,并为解码降乳素途径提供了途径。

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