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Expression of xylanase enzymes from thermophilic microorganisms in fungal hosts

机译:嗜热微生物木聚糖酶在真菌宿主中的表达

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Bulk production of xylanases from thermophilic microorganisms is a prerequisite for their use in industrial processes. As effective secretors of gene products, fungal expression systems provide a promising, industrially relevant alternative to bacteria for heterologous enzyme production. We are currently developing the yeast Kluyveromyces lactis and the filamentous fungus Trichoderma reesei for the extracellular production of thermophilic enzymes for the pulp and paper industry. The K. lactis system has been tested with two thermophilic xylanases and secretes gram amounts of largely pure xylanase A from Dictyoglomus thermophilum in chemostat culture. The T. reesei expression system involves the use of the cellobiohydrolase I (CBHI) promoter and gene fusions for the secretion of heterologous thermostable xylanases of both bacterial and fungal origin. We have reconstructed the AT-rich xynB gene of Dictyoglomus thermophilum according to Trichoderma codon preferences and demonstrated a dramatic increase in expression. A heterologous fungal gene, Humicola grisea xyn2, could be expressed without codon modification. Initial amounts of the XYN2 protein were of a gram per liter range in shake-flask cultivations, and the gene product was correctly processed by the heterologous host. Comparison of the expression of three thermophilic heterologous microbial xylanases in T. reesei demonstrates the need for addressing each case individually.
机译:由嗜热微生物批量生产木聚糖酶是其在工业过程中使用的先决条件。作为基因产物的有效分泌者,真菌表达系统为细菌生产异源酶提供了一种有希望的,与工业相关的替代方法。我们目前正在开发酵母克鲁维酵母和丝状真菌里氏木霉,用于纸浆和造纸工业的嗜热酶的细胞外生产。已用两种嗜热木聚糖酶测试了乳酸克鲁维酵母系统,并在恒化器培养物中分泌了克量的嗜热双歧杆菌的大量纯木聚糖酶A。里氏木霉表达系统涉及纤维二糖水解酶I(CBHI)启动子和基因融合体的分泌,以分泌细菌和真菌来源的异源热稳定木聚糖酶。我们已经根据木霉密码子的偏好重建了嗜热双歧杆菌的富含AT的xynB基因,并证明了其表达量的急剧增加。无需真菌密码子修饰即可表达异源真菌基因Humicola grisea xyn2。在摇瓶培养中,XYN2蛋白的初始量为每升克1克,并且该基因产物已被异源宿主正确加工。里氏木霉中三种嗜热异源微生物木聚糖酶表达的比较表明需要分别解决每种情况。

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