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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Effects of process parameters on heterologous protein production in Aspergillus niger fermentation
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Effects of process parameters on heterologous protein production in Aspergillus niger fermentation

机译:工艺参数对黑曲霉发酵中异源蛋白质产生的影响

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Filamentous fungi such as Aspergillus niger are attractive hosts for recombinant DNA technology because of their ability to secrete bioactive proteins with post-translational processing such as glycosylation. Foreign genes can be incorporated into the chromosomes of the filamentous fungi, providing superior long-term genetic stability. However, heterologous protein production is often severely hampered by fungal proteases. In this work, a recombinant Aspergillus niger strain AB4.1 [pgPdAGLAGFP]#11 which carries a glucoamylase (GLA)-green fluorescent protein (GFP) fusion gene was selected as a model system to study the effects of bioprocess parameters-agitation intensity, initial glucose concentration, initial yeast extract concentration, and dissolved oxygen tension (DO)-on extracellular protease inhibition and heterologous protein production. Based on previous experimental experience and results, a 2(4-1) fractional factorial design was applied to the experiments. Each parameter was tested at two levels. It was found that agitation affected the GFP production most significantly. Higher agitation rate resulted in higher GFP production. Protease activity was most influenced by initial glucose concentration and DO. Fungal morphology was also affected by these parameters. The effects of these parameters on pellet size and pellet porosity are discussed. (C) 2003 Society of Chemical Industry.
机译:黑丝菌等丝状真菌是重组DNA技术的诱人宿主,因为它们具有通过翻译后加工(例如糖基化)分泌生物活性蛋白的能力。可以将外源基因整合到丝状真菌的染色体中,从而提供出色的长期遗传稳定性。但是,真菌蛋白酶常常严重地阻碍了异源蛋白的产生。在这项工作中,选择带有葡糖淀粉酶(GLA)-绿色荧光蛋白(GFP)融合基因的重组黑曲霉菌株AB4.1 [pgPdAGLAGFP]#11作为模型系统,以研究生物过程参数-搅拌强度的影响,初始葡萄糖浓度,初始酵母提取物浓度和溶解氧张力(DO)对细胞外蛋白酶的抑制作用以及异源蛋白质的产生。根据以前的实验经验和结果,将2(4-1)分数阶乘设计应用于实验。每个参数都在两个级别上进行了测试。发现搅动对GFP产生的影响最大。较高的搅拌速率导致较高的GFP产生。蛋白酶活性受初始葡萄糖浓度和DO的影响最大。真菌形态也受到这些参数的影响。讨论了这些参数对颗粒尺寸和颗粒孔隙率的影响。 (C)2003年化学工业协会。

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