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Increased Production of Xylanase by Expression of a Truncated Version of the xyn11A Gene from Nonomuraea flexuosa in Trichoderma reesei▿

机译:通过在里氏木霉中表达来自野野弯曲菌xyn11A基因的截短版本提高木聚糖酶的产量

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摘要

We have previously shown that the Nonomuraea flexuosa Xyn11A polypeptides devoid of the carbohydrate binding module (CBM) have better thermostability than the full-length xylanase and are effective in bleaching of pulp. To produce an enzyme preparation useful for industrial applications requiring high temperature, the region encoding the CBM was deleted from the N. flexuosa xyn11A gene and the truncated gene was expressed in Trichoderma reesei. The xylanase sequence was fused to the T. reesei mannanase I (Man5A) signal sequence or 3′ to a T. reesei carrier polypeptide, either the Man5A core/hinge or the cellulose binding domain (CBD) of cellobiohydrolase II (Cel6A, CBHII). The gene and fusion genes were expressed using the cellobiohydrolase 1 (cel7A, cbh1) promoter. Single-copy isogenic transformants in which the expression cassette replaced the cel7A gene were cultivated and analyzed. The transformants expressing the truncated N. flexuosa xyn11A produced clearly increased amounts of both the xylanase/fusion mRNA and xylanase activity compared to the corresponding strains expressing the full-length N. flexuosa xyn11A. The transformant expressing the cel6A CBD-truncated N. flexuosa xyn11A produced about 1.9 g liter−1 of the xylanase in laboratory-scale fermentations. The xylanase constituted about 25% of the secreted proteins. The production of the truncated xylanase did not induce the unfolded protein response (UPR) pathway. However, the UPR was induced when the full-length N. flexuosa xyn11A with an exact fusion to the cel7A terminator was expressed. We suggest that the T. reesei folding/secretion machinery is not able to cope properly with the bacterial CBM when the mRNA of the full-length N. flexuosa xyn11A is efficiently translated.
机译:先前我们已经表明,不含碳水化合物结合模块(CBM)的柔柔Nonomuraea flexuosa Xyn11A多肽比全长木聚糖酶具有更好的热稳定性,并且可以有效地漂白纸浆。为了生产可用于需要高温的工业应用的酶制剂,从柔毛猪笼草xyn11A基因中删除了编码CBM的区域,并且截短的基因在里氏木霉中表达。木聚糖酶序列与里氏木霉甘露聚糖酶I(Man5A)信号序列融合,或3'融合到里氏木霉载体多肽,即纤维二糖水解酶II(Cel6A,CBHII)的Man5A核心/铰链或纤维素结合域(CBD)。 。使用纤维二糖水解酶1(cel7A,cbh1)启动子表达基因和融合基因。培养并分析其中表达盒替代了cel7A基因的单拷贝同基因转化体。与表达全长弗氏弯曲菌xyn11A的相应菌株相比,表达截短的弗氏弯曲菌xyn11A的转化体产生的木聚糖酶/融合mRNA和木聚糖酶活性明显增加。在实验室规模的发酵中,表达cel6A CBD截短的弯曲柔梭菌xyn11A的转化体产生了约1.9 g升-1的木聚糖酶。木聚糖酶约占分泌蛋白的25%。截短的木聚糖酶的产生没有诱导未折叠的蛋白应答(UPR)途径。但是,当表达与cel7A终止子完全融合的全长弗氏弯曲杆菌xyn11A时,诱导了UPR。我们建议,当有效弯曲全长弗氏弯曲杆菌xyn11A的mRNA时,里氏木霉的折叠/分泌机制无法正确应对细菌CBM。

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