Construction of the advanced flavin mononucleotide producers in the flavinogenic yeast Candida famata.

IF 2.2 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Yeast Pub Date : 2023-08-01 DOI:10.1002/yea.3843
Dariya V Fedorovych, Andriy O Tsyrulnyk, Justyna Ruchala, Svitlana M Sobchuk, Kostyantyn V Dmytruk, Lyubov R Fayura, Andriy A Sibirny
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Abstract

Flavin mononucleotide (FMN, riboflavin-5'-phosphate) is flavin coenzyme synthesized in all living organisms from riboflavin (vitamin B2 ) after phosphorylation in the reaction catalyzed by riboflavin kinase. FMN has several applications mostly as yellow colorant in food industry due to 200 times better water solubility as compared to riboflavin. Currently, FMN is produced by chemical phosphorylation of riboflavin, however, final product contains up to 25% of flavin impurities. Microbial overproducers of FMN are known, however, they accumulate this coenzyme in glucose medium. Current work shows that the recombinant strains of the flavinogenic yeast Candida famata with overexpressed FMN1 gene coding for riboflavin kinase in the recently isolated by us advanced riboflavin producers due to overexpression of the structural and regulatory genes of riboflavin synthesis and of the putative exporter of riboflavin from the cell, synthesized elevated amounts of FMN in the media not only with glucose but also in lactose and cheese whey. Activation of FMN accumulation on lactose and cheese whey was especially strong in the strains which expressed the gene of transcription activator SEF1 under control of the lactose-induced LAC4 promoter. The accumulation of this coenzyme by the washed cells of the best recombinant strain achieved 540 mg/L in the cheese whey supplemented only with ammonium sulfate during 48 h in shake flask experiments.

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黄素产酵母菌中黄素单核苷酸先进产体的构建。
黄素单核苷酸(Flavin mononucleotide, FMN, riboflavin-5'-phosphate)是所有生物体内由核黄素(维生素B2)在核黄素激酶催化下磷酸化后合成的黄素辅酶。由于FMN的水溶性比核黄素好200倍,因此在食品工业中主要用作黄色着色剂。目前,FMN是通过核黄素的化学磷酸化产生的,然而,最终产品含有高达25%的黄素杂质。微生物过量生产FMN是已知的,然而,他们在葡萄糖培养基中积累这种辅酶。目前的研究表明,在我们最近分离到的高级核黄素生产者(由于核黄素合成的结构和调控基因的过度表达)和推测的核黄素从细胞中输出的重组菌株中,黄素原酵母FMN1基因编码核黄素激酶的重组菌株,不仅在葡萄糖培养基中,而且在乳糖和奶酪乳清中合成了大量的FMN。在乳糖诱导的LAC4启动子控制下,表达转录激活因子SEF1基因的菌株对乳糖和奶酪乳清上FMN积累的激活作用尤为强烈。在摇瓶实验中,最佳重组菌株的洗涤细胞在仅添加硫酸铵的奶酪乳清中积累了540 mg/L的辅酶。
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来源期刊
Yeast
Yeast 生物-生化与分子生物学
CiteScore
5.30
自引率
3.80%
发文量
55
审稿时长
3 months
期刊介绍: Yeast publishes original articles and reviews on the most significant developments of research with unicellular fungi, including innovative methods of broad applicability. It is essential reading for those wishing to keep up to date with this rapidly moving field of yeast biology. Topics covered include: biochemistry and molecular biology; biodiversity and taxonomy; biotechnology; cell and developmental biology; ecology and evolution; genetics and genomics; metabolism and physiology; pathobiology; synthetic and systems biology; tools and resources
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