首页> 外文OA文献 >Degradation of Xylan to D-Xylose by recombinant Saccharomyces cerevisiae coexpressing the Aspergillus niger β-Xylosidase (xlnD) and the Trichoderma reesei Xylanase II (xyn2) genes
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Degradation of Xylan to D-Xylose by recombinant Saccharomyces cerevisiae coexpressing the Aspergillus niger β-Xylosidase (xlnD) and the Trichoderma reesei Xylanase II (xyn2) genes

机译:共表达黑曲霉β-木糖苷酶(xlnD)和里氏木霉木聚糖酶II(xyn2)基因的酿酒酵母将木聚糖降解为D-木糖

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摘要

The β-xylosidase-encoding xlnD gene ofAspergillus niger 90196 was amplified by the PCR technique from first-strand cDNA synthesized on mRNA isolated from the fungus. The nucleotide sequence of the cDNA fragment was verified to contain a 2,412-bp open reading frame that encodes a 804-amino-acid propeptide. The 778-amino-acid mature protein, with a putative molecular mass of 85.1 kDa, was fused in frame with the Saccharomyces cerevisiae mating factor α1 signal peptide (MFα1s) to ensure correct posttranslational processing in yeast. The fusion protein was designated Xlo2. The recombinant β-xylosidase showed optimum activity at 60°C and pH 3.2 and optimum stability at 50°C. The K i(app) value forD-xylose and xylobiose for the recombinant β-xylosidase was determined to be 8.33 and 6.41 mM, respectively. TheXLO2 fusion gene and the XYN2 β-xylanase gene from Trichoderma reesei, located on URA3-based multicopy shuttle vectors, were successfully expressed and coexpressed in the yeast Saccharomyces cerevisiae under the control of the alcohol dehydrogenase II gene (ADH2) promoter and terminator. These recombinant S. cerevisiae strains produced 1,577 nkat/ml of β-xylanase activity when expressing only the β-xylanase and 860 nkat/ml when coexpressing the β-xylanase with the β-xylosidase. The maximum β-xylosidase activity was 5.3 nkat/ml when expressed on its own and 3.5 nkat/ml when coexpressed with the β-xylanase. Coproduction of the β-xylanase and β-xylosidase enabled S. cerevisiae to degrade birchwood xylan toD-xylose.
机译:通过PCR技术从在真菌分离的mRNA上合成的第一链cDNA中扩增出编码黑曲霉90196的β-木糖苷酶的xlnD基因。证实cDNA片段的核苷酸序列包含2,412-bp的开放阅读框,其编码804个氨基酸的前肽。将推测分子量为85.1 kDa的778个氨基酸成熟蛋白与酿酒酵母交配因子α1信号肽(MFα1s)框内融合,以确保酵母中正确的翻译后加工。融合蛋白命名为Xlo2。重组β-木糖苷酶在60℃和pH 3.2下显示最佳活性,在50℃下显示最佳稳定性。重组β-木糖苷酶的D-木糖和木糖的K i(app)值分别确定为8.33和6.41 mM。位于里拉木霉的多拷贝穿梭载体上的里氏木霉的XLO2融合基因和XYN2β-木聚糖酶基因在酒精脱氢酶II基因(ADH2)启动子和终止子的控制下成功表达并共表达在酿酒酵母中。当仅表达β-木聚糖酶时,这些重组酿酒酵母菌株产生1,577 nkat / ml的β-木聚糖酶活性,而当将β-木聚糖酶与β-木糖苷酶共表达时,它们产生860 nkat / ml。当单独表达时,最大β-木糖苷酶活性为5.3 nkat / ml,当与β-木聚糖酶共表达时,最大β-木糖苷酶活性为3.5 nkat / ml。 β-木聚糖酶和β-木糖苷酶的共同生产使得酿酒酵母能够将桦木木聚糖降解为D-木糖。

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