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首页> 外文期刊>Applied and Environmental Microbiology >High-Yield Production of a Bacterial Xylanase in the Filamentous Fungus Trichoderma reesei Requires a Carrier Polypeptide with an Intact Domain Structure
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High-Yield Production of a Bacterial Xylanase in the Filamentous Fungus Trichoderma reesei Requires a Carrier Polypeptide with an Intact Domain Structure

机译:丝状真菌里氏木霉中细菌木聚糖酶的高产生产需要具有完整域结构的载体多肽

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摘要

A bacterial xylanase gene, Nonomuraea flexuosa xyn11A, was expressed in the filamentous fungus Trichoderma reesei from the strong cellobiohydrolase 1 promoter as fusions to a variety of carrier polypeptides. By using single-copy isogenic transformants, it was shown that production of this xylanase was clearly increased (up to 820 mg/liter) when it was produced as a fusion protein with a carrier polypeptide having an intact domain structure compared to the production (150 to 300 mg/liter) of fusions to the signal sequence alone or to carriers having incomplete domain structures. The carriers tested were the T. reesei mannanase I (Man5A, or MANI) core-hinge and a fragment thereof and the cellulose binding domain of T. reesei cellobiohydrolase II (Cel6A, or CBHII) with and without the hinge region(s) and a fragment thereof. The flexible hinge region was shown to have a positive effect on both the production of Xyn11A and the efficiency of cleavage of the fusion polypeptide. The recombinant Xyn11A produced had properties similar to those of the native xylanase. It constituted 6 to 10% of the total proteins secreted by the transformants. About three times more of the Man5A core-hinge carrier polypeptide than of the recombinant Xyn11A was observed. Even in the best Xyn11A producers, the levels of the fusion mRNAs were only ~10% of the level of cel7A (cbh1) mRNA in the untransformed host strain.
机译:细菌木聚糖酶基因 Nonomuraea flexuosa xyn11A 在纤维状真菌 Trichoderma reesei 中从强大的纤维二糖水解酶1启动子中表达,与多种载体多肽融合。通过使用单拷贝等基因转化子,显示了当该木聚糖酶与带有完整结构域结构的载体多肽的融合蛋白作为融合蛋白生产时,该木聚糖酶的产量明显增加(最高820 mg / L)(150)。 -300mg /升)与单独的信号序列或具有不完整结构域结构的载体的融合。测试的载体是 T。里氏甘露聚糖酶I(Man5A或MANI)核心铰链及其片段和 T的纤维素结合域。带有和不带有铰链区及其片段的里氏纤维二糖水解酶II(Cel6A或CBHII)。已显示柔性铰链区对Xyn11A的产生和融合多肽的切割效率均具有积极作用。产生的重组Xyn11A具有与天然木聚糖酶相似的特性。它占转化体分泌的总蛋白质的6%至10%。观察到的Man5A核心铰链载体多肽大约是重组Xyn11A的三倍。即使在最好的Xyn11A生产者中,融合mRNA的水平也仅为未转化宿主菌株中 cel7A cbh1 )mRNA的〜10%。

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