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Major proteins related to chlortetracycline biosynthesis in a Streptomyces aureofaciens production strain studied by quantitative proteomics

机译:定量蛋白质组学研究金黄色链霉菌生产菌株中金霉素的生物合成相关主要蛋白质

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摘要

Changes in synthesis and abundance of proteins associated with chlortetracycline (CTC) production in Streptomyces aureofaciens were investigated by two-dimensional polyacrylamide gel electrophoresis of proteins pulse-labelled in vivo with L-[35S]methionine. Eleven individual protein spots were selected as being related to formation of the antibiotic. Expression of these prominent proteins was not observed in the non-producing mutant; moreover, they were overexpressed in cultures grown in the presence of benzyl thiocyanate, a specific stimulator of CTC biosynthesis used in industrial fermentations. The expression kinetics of the selected proteins was assessed using the technique of computer-assisted image analysis with the EQIAS software and the elongation factor Tu as an internal standard. Interestingly, the kinetic profiles were generally not identical, including those of anhydrotetracycline monooxygenase and the 13-kDa subunit of tetracycline dehydrogenase, two enzymes involved in the terminal sequential steps of the CTC biosynthetic pathway. The presence of more forms of these enzymes with different charge characteristics was observed. The data presented demonstrated how dramatically the industrial microorganism can change its protein repertoire during the production phase; at least five proteins were nearly comparable in level to the most prominent proteins, exemplified by elongation factor Tu.
机译:用二维脉冲聚丙烯酰胺凝胶电泳法对体内用L- [35 S]蛋氨酸进行脉冲标记的蛋白质进行了研究,研究了金黄色链霉菌中与金霉素(CTC)产生有关的蛋白质的合成和丰度变化。选择了11个单独的蛋白斑点,它们与抗生素的形成有关。在非生产突变体中未观察到这些突出蛋白的表达。此外,它们在硫氰酸苄酯(一种工业发酵中使用的CTC生物合成的特定刺激物)的存在下培养的培养物中过表达。使用计算机辅助图像分析技术,以EQIAS软件和延伸因子Tu为内标,评估所选蛋白质的表达动力学。有趣的是,动力学特征通常是不相同的,包括脱水四环素单加氧酶和四环素脱氢酶的13-kDa亚基,这两种酶参与CTC生物合成途径的末端顺序步骤。观察到存在更多形式的这些具有不同电荷特征的酶。所提供的数据表明,工业微生物在生产阶段可以极大地改变其蛋白质库。至少有五个蛋白质在水平上与最突出的蛋白质几乎相当,例如延伸因子Tu。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2001年第6期|717-724|共8页
  • 作者单位

    Institute of Microbiology Academy of Sciences of the Czech Republic Vídeňská 1083 142 20 Prague 4 Czech Republic;

    Institute of Microbiology Academy of Sciences of the Czech Republic Vídeňská 1083 142 20 Prague 4 Czech Republic;

    Institute of Microbiology Academy of Sciences of the Czech Republic Vídeňská 1083 142 20 Prague 4 Czech Republic;

    Institute of Microbiology Academy of Sciences of the Czech Republic Vídeňská 1083 142 20 Prague 4 Czech Republic;

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