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首页> 外文期刊>Applied Microbiology and Biotechnology >Lipase production by recombinant strains of Aspergillus niger expressing a lipase-encoding gene from Thermomyces lanuginosus
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Lipase production by recombinant strains of Aspergillus niger expressing a lipase-encoding gene from Thermomyces lanuginosus

机译:黑曲霉的重组菌株生产脂肪酶,该菌株表达嗜热单胞菌的脂肪酶编码基因

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摘要

Two recombinant strains of Aspergillus niger (NW 297-14 and NW297-24) producing a heterologous lipase from Thermomyces lanuginosus were constructed. The heterologous lipase was expressed using the TAKA amylase promoter from Aspergillus oryzae. The production kinetics of the two strains on different carbon sources in batch and carbon-limited chemostat cultivations were evaluated. In batch cultivations, the highest total product yield coefficient (Y xp total), given as the sum of extracellular and intracellular yields, was obtained during growth on glucose for the transformant strain NW297-24 (5.7±0.65 KU/g DW), whereas the highest total product yield coefficient was obtained during growth on maltose for the transformant strain NW297-14 (6.3±0.02 KU/g DW). Both transformants were evaluated in glucose-limited chemostat cultures. Strain NW297-14 was found to be the best producer and was thus employed for further analysis of the influence of carbon source in chemostat cultures. Here, the highest total specific lipase productivity (r p total, the sum of extracellular and intracellular lipase productivity) was found to be 1.60±0.81 KU/g DW/h in maltose-limited chemostats at a dilution rate of 0.08 h−1, compared with a total specific lipase productivity of 1.10±0.41 KU/g DW/h in glucose-limited chemostats. At the highest specific productivity obtained in this study, the heterologous enzyme accounted for about 1% of all cellular protein being produced by the cells, which shows that it is possible to obtain high productivities of heterologous fungal enzymes in A. niger. However, SDS-PAGE analysis showed that most of the produced lipase was bound to the cell wall.
机译:构建了两个黑曲霉的重组菌株(NW 297-14和NW297-24),它们从嗜热单胞菌产生异源脂肪酶。使用米曲霉的TAKA淀粉酶启动子表达异源脂肪酶。评估了两个菌株在不同碳源上分批和碳限制的恒化器培养的生产动力学。在分批培养中,转化株NW297-24的葡萄糖生长过程中获得了最高的总产品产量系数(Y xp total ),其为细胞外和细胞内产量的总和(5.7±0.65 KU / g) DW),而转化菌株NW297-14在麦芽糖上生长期间获得了最高的总产物产量系数(6.3±0.02 KU / g DW)。在葡萄糖有限的恒化器培养物中评估了两种转化体。发现菌株NW297-14是最好的生产者,因此被用于进一步分析碳源在化学恒温器培养物中的影响。在此,在0.08 h稀释率的麦芽糖限制的恒化器中,最高总比脂肪酶生产率(rp total ,细胞外和细胞内脂肪酶生产率的总和)为1.60±0.81 KU / g DW / h。 -1 ,而在葡萄糖有限的恒化器中,总比脂肪酶的生产率为1.10±0.41 KU / g DW / h。在这项研究中获得的最高比生产率下,异源酶约占细胞产生的所有细胞蛋白的1%,这表明在黑曲霉中可以获得高生产率的异源真菌酶。但是,SDS-PAGE分析表明,大多数产生的脂肪酶都与细胞壁结合。

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  • 来源
    《Applied Microbiology and Biotechnology 》 |2004年第6期| 714-719| 共6页
  • 作者单位

    BioCentrum-DTU Center for Microbial Biotechnology Technical University of Denmark;

    Clusius Laboratory Leiden University;

    BioCentrum-DTU Center for Microbial Biotechnology Technical University of Denmark;

    BioCentrum-DTU Center for Microbial Biotechnology Technical University of Denmark;

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